General Information of Drug Transporter (DT)
DT ID DTD0458 Transporter Info
Gene Name SLC6A6
Transporter Name Sodium- and chloride-dependent taurine transporter
Gene ID
6533
UniProt ID
P31641
Exogenous factors (drugs, dietary constituents, etc.) Modulation of This DT (EGM)

Chemical Compound

  DT Modulation1

Ethinyl Estradiol affects the expression of SLC6A6 mRNA [54]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Cyclosporine results in increased expression of SLC6A6 mRNA [35]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Cisplatin co-treated with jinfukang results in increased expression of SLC6A6 mRNA [21]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Cisplatin results in increased expression of SLC6A6 mRNA [21]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Estradiol co-treated with Tetrachlorodibenzodioxin results in increased expression of SLC6A6 mRNA [52]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Estradiol promotes the reaction ESR2 protein affects the expression of SLC6A6 mRNA [53]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Valproic Acid results in increased methylation of SLC6A6 gene [65]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Genistein affects the expression of SLC6A6 mRNA [54]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Benzo(a)pyrene affects the methylation of SLC6A6 3' UTR [44]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Benzo(a)pyrene affects the methylation of SLC6A6 promoter [44]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

Benzo(a)pyrene results in increased methylation of SLC6A6 5' UTR [44]

Regulation Mechanism

Transcription Factor Info

  2,4,5,2',4',5'-hexachlorobiphenyl

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

2,4,5,2',4',5'-hexachlorobiphenyl results in increased expression of SLC6A6 mRNA [30]

Regulation Mechanism

Transcription Factor Info

  4-(5-benzo(1,3)dioxol-5-yl-4-pyridin-2-yl-1H-imidazol-2-yl)benzamide

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

NOG protein co-treated with trichostatin A co-treated with dorsomorphin co-treated with 4-(5-benzo(1,3)dioxol-5-yl-4-pyridin-2-yl-1H-imidazol-2-yl)benzamide results in increased expression of SLC6A6 mRNA [8]

Regulation Mechanism

Transcription Factor Info

  7,8-Dihydro-7,8-dihydroxybenzo(a)pyrene 9,10-oxide

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

7,8-Dihydro-7,8-dihydroxybenzo(a)pyrene 9,10-oxide results in decreased expression of SLC6A6 mRNA [31]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

7,8-Dihydro-7,8-dihydroxybenzo(a)pyrene 9,10-oxide results in increased expression of SLC6A6 mRNA [32]

Regulation Mechanism

Transcription Factor Info

  abrine

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

abrine results in decreased expression of SLC6A6 mRNA [33]

Regulation Mechanism

Transcription Factor Info

  Acrolein

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Acrolein co-treated with methacrylaldehyde co-treated with alpha-pinene co-treated with Ozone results in increased oxidation of SLC6A6 mRNA [34]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Air Pollutants results in increased abundance of Acrolein co-treated with methacrylaldehyde co-treated with alpha-pinene co-treated with Ozone which results in increased oxidation of SLC6A6 mRNA [34]

Regulation Mechanism

Transcription Factor Info

  alpha-pinene

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Acrolein co-treated with methacrylaldehyde co-treated with alpha-pinene co-treated with Ozone results in increased oxidation of SLC6A6 mRNA [34]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Air Pollutants results in increased abundance of Acrolein co-treated with methacrylaldehyde co-treated with alpha-pinene co-treated with Ozone which results in increased oxidation of SLC6A6 mRNA [34]

Regulation Mechanism

Transcription Factor Info

  Amphotericin B

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Amphotericin B analog results in decreased expression of SLC6A6 mRNA [37]

Regulation Mechanism

Transcription Factor Info

  aristolochic acid I

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

aristolochic acid I results in decreased expression of SLC6A6 mRNA [38]

Regulation Mechanism

Transcription Factor Info

  Asbestos, Crocidolite

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Asbestos, Crocidolite results in increased expression of SLC6A6 mRNA [42]

Regulation Mechanism

Transcription Factor Info

  Asbestos, Serpentine

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Asbestos, Serpentine results in decreased expression of SLC6A6 mRNA [43]

Regulation Mechanism

Transcription Factor Info

  avobenzone

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

avobenzone results in increased expression of SLC6A6 mRNA [12]

Regulation Mechanism

Transcription Factor Info

  beta-lapachone

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

beta-lapachone results in decreased expression of SLC6A6 mRNA [45]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

beta-lapachone results in increased expression of SLC6A6 mRNA [45]

Regulation Mechanism

Transcription Factor Info

  bisphenol A

           4 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

bisphenol A co-treated with Fulvestrant results in increased methylation of SLC6A6 gene [46]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

bisphenol A results in decreased expression of SLC6A6 protein [25]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

bisphenol A results in decreased methylation of SLC6A6 gene [46]

Regulation Mechanism

Transcription Factor Info

  DT Modulation4

bisphenol A results in increased expression of SLC6A6 mRNA [15]

Regulation Mechanism

Transcription Factor Info

  bisphenol F

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

bisphenol F co-treated with Fulvestrant results in increased methylation of SLC6A6 gene [46]

Regulation Mechanism

Transcription Factor Info

  bisphenol S

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

bisphenol S results in decreased methylation of SLC6A6 gene [46]

Regulation Mechanism

Transcription Factor Info

  butyraldehyde

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

butyraldehyde results in increased expression of SLC6A6 mRNA [19]

Regulation Mechanism

Transcription Factor Info

  Cadmium Chloride

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cadmium Chloride results in increased abundance of Cadmium which results in increased expression of SLC6A6 mRNA [47]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Cadmium Chloride results in increased expression of SLC6A6 mRNA [7]

Regulation Mechanism

Transcription Factor Info

  cadmium sulfate

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

cadmium sulfate co-treated with cobaltous chloride co-treated with lead chloride results in increased expression of SLC6A6 mRNA [48]

Regulation Mechanism

Transcription Factor Info

  chloroacetaldehyde

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

chloroacetaldehyde affects the expression of SLC6A6 mRNA [7]

Regulation Mechanism

Transcription Factor Info

  cobaltous chloride

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

cadmium sulfate co-treated with cobaltous chloride co-treated with lead chloride results in increased expression of SLC6A6 mRNA [48]

Regulation Mechanism

Transcription Factor Info

  cupric chloride

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

cupric chloride results in increased expression of SLC6A6 mRNA [30]

Regulation Mechanism

Transcription Factor Info

  diallyl disulfide

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

diallyl disulfide results in increased expression of SLC6A6 mRNA [49]

Regulation Mechanism

Transcription Factor Info

  diallyl tetrasulfide

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

diallyl tetrasulfide results in increased expression of SLC6A6 mRNA [49]

Regulation Mechanism

Transcription Factor Info

  diallyl trisulfide

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

diallyl trisulfide results in increased expression of SLC6A6 mRNA [49]

Regulation Mechanism

Transcription Factor Info

  Dichlorodiphenyl Dichloroethylene

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Dichlorodiphenyl Dichloroethylene results in decreased expression of SLC6A6 mRNA [30]

Regulation Mechanism

Transcription Factor Info

  di-n-butylphosphoric acid

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

di-n-butylphosphoric acid affects the expression of SLC6A6 mRNA [50]

Regulation Mechanism

Transcription Factor Info

  dorsomorphin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

NOG protein co-treated with trichostatin A co-treated with dorsomorphin co-treated with 4-(5-benzo(1,3)dioxol-5-yl-4-pyridin-2-yl-1H-imidazol-2-yl)benzamide results in increased expression of SLC6A6 mRNA [8]

Regulation Mechanism

Transcription Factor Info

  epigallocatechin gallate

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

potassium chromate(VI) co-treated with epigallocatechin gallate results in decreased expression of SLC6A6 mRNA [51]

Regulation Mechanism

Transcription Factor Info

  Fulvestrant

           3 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

bisphenol A co-treated with Fulvestrant results in increased methylation of SLC6A6 gene [46]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

bisphenol F co-treated with Fulvestrant results in increased methylation of SLC6A6 gene [46]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

Fulvestrant results in increased methylation of SLC6A6 gene [46]

Regulation Mechanism

Transcription Factor Info

  glycidyl methacrylate

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

glycidyl methacrylate results in decreased expression of SLC6A6 protein [55]

Regulation Mechanism

Transcription Factor Info

  lead acetate

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

lead acetate results in increased expression of SLC6A6 mRNA [30]

Regulation Mechanism

Transcription Factor Info

  lead chloride

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

cadmium sulfate co-treated with cobaltous chloride co-treated with lead chloride results in increased expression of SLC6A6 mRNA [48]

Regulation Mechanism

Transcription Factor Info

  methacrylaldehyde

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Acrolein co-treated with methacrylaldehyde co-treated with alpha-pinene co-treated with Ozone results in increased oxidation of SLC6A6 mRNA [34]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Air Pollutants results in increased abundance of Acrolein co-treated with methacrylaldehyde co-treated with alpha-pinene co-treated with Ozone which results in increased oxidation of SLC6A6 mRNA [34]

Regulation Mechanism

Transcription Factor Info

  methyleugenol

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

methyleugenol results in increased expression of SLC6A6 mRNA [23]

Regulation Mechanism

Transcription Factor Info

  nickel sulfate

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

nickel sulfate results in increased expression of SLC6A6 mRNA [57]

Regulation Mechanism

Transcription Factor Info

  N-Nitrosopyrrolidine

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

N-Nitrosopyrrolidine results in increased expression of SLC6A6 mRNA [23]

Regulation Mechanism

Transcription Factor Info

  Oxygen

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Oxygen deficiency results in increased expression of SLC6A6 mRNA [7]

Regulation Mechanism

Transcription Factor Info

  Ozone

           4 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Acrolein co-treated with methacrylaldehyde co-treated with alpha-pinene co-treated with Ozone results in increased oxidation of SLC6A6 mRNA [34]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Air Pollutants results in increased abundance of Acrolein co-treated with methacrylaldehyde co-treated with alpha-pinene co-treated with Ozone which results in increased oxidation of SLC6A6 mRNA [34]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

Air Pollutants results in increased abundance of Ozone which affects the expression of SLC6A6 mRNA [58]

Regulation Mechanism

Transcription Factor Info

  DT Modulation4

Volatile Organic Compounds co-treated with Ozone results in increased oxidation of SLC6A6 mRNA [34]

Regulation Mechanism

Transcription Factor Info

  perfluorooctane sulfonic acid

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

perfluorooctane sulfonic acid results in decreased expression of SLC6A6 mRNA [24]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

perfluorooctane sulfonic acid results in increased expression of SLC6A6 mRNA [59]

Regulation Mechanism

Transcription Factor Info

  perfluorooctanoic acid

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

perfluorooctanoic acid results in decreased expression of SLC6A6 mRNA [60]

Regulation Mechanism

Transcription Factor Info

  potassium chromate(VI)

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

potassium chromate(VI) co-treated with epigallocatechin gallate results in decreased expression of SLC6A6 mRNA [51]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

potassium chromate(VI) results in decreased expression of SLC6A6 mRNA [51]

Regulation Mechanism

Transcription Factor Info

  quinocetone

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

quinocetone results in decreased expression of SLC6A6 mRNA [61]

Regulation Mechanism

Transcription Factor Info

  Silicon Dioxide

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Silicon Dioxide analog results in increased expression of SLC6A6 mRNA [62]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Silicon Dioxide results in increased expression of SLC6A6 mRNA [42]

Regulation Mechanism

Transcription Factor Info

  sodium arsenate

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

sodium arsenate results in increased abundance of Arsenic which results in increased expression of SLC6A6 mRNA [40]

Regulation Mechanism

Transcription Factor Info

  sodium arsenite

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

sodium arsenite results in increased abundance of Arsenic which results in increased expression of SLC6A6 mRNA [41]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

sodium arsenite results in increased expression of SLC6A6 mRNA [63]

Regulation Mechanism

Transcription Factor Info

  sulforaphane

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

sulforaphane results in increased expression of SLC6A6 mRNA [22]

Regulation Mechanism

Transcription Factor Info

  Tetrachlorodibenzodioxin

           3 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Estradiol co-treated with Tetrachlorodibenzodioxin results in increased expression of SLC6A6 mRNA [52]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Tetrachlorodibenzodioxin affects the expression of SLC6A6 mRNA [64]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

Tetrachlorodibenzodioxin results in increased expression of SLC6A6 mRNA [52]

Regulation Mechanism

Transcription Factor Info

  trichostatin A

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

NOG protein co-treated with trichostatin A co-treated with dorsomorphin co-treated with 4-(5-benzo(1,3)dioxol-5-yl-4-pyridin-2-yl-1H-imidazol-2-yl)benzamide results in increased expression of SLC6A6 mRNA [8]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

trichostatin A results in increased expression of SLC6A6 mRNA [17]

Regulation Mechanism

Transcription Factor Info

  triphenyl phosphate

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

triphenyl phosphate affects the expression of SLC6A6 mRNA [50]

Regulation Mechanism

Transcription Factor Info

Approved Drug

  Arsenic

           4 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Arsenic affects the expression of SLC6A6 [1]

  Ethinyl Estradiol

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Ethinyl Estradiol inhibits the expression of SLC6A6 [2]

  Diethylstilbestrol

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Diethylstilbestrol increases the expression of SLC6A6 [3]

  Copper Sulfate

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Copper Sulfate increases the expression of SLC6A6 [4]

  Dasatinib

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Dasatinib increases the expression of SLC6A6 [5]

  Azathioprine

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Azathioprine increases the expression of SLC6A6 [6]

  Cidofovir

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cidofovir affects the expression of SLC6A6 [7]

  Cyclosporine

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cyclosporine inhibits the expression of SLC6A6 [7]

  Vorinostat

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Vorinostat inhibits the expression of SLC6A6 [8]

  Cisplatin

           3 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cisplatin inhibits the expression of SLC6A6 [9]

  Acetaminophen

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Acetaminophen increases the expression of SLC6A6 [10]

  Dronabinol

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Dronabinol inhibits the expression of SLC6A6 [11]

  Avobenzone

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Avobenzone increases the expression of SLC6A6 [12]

  Sunitinib

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Sunitinib inhibits the expression of SLC6A6 [13]

  Temozolomide

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Temozolomide inhibits the expression of SLC6A6 [14]

  Estradiol

           3 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Estradiol increases the expression of SLC6A6 [15]

  Tretinoin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Tretinoin increases the expression of SLC6A6 [16]

  Valproic Acid

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Valproic Acid increases the expression of SLC6A6 [17]

Drug in Phase 3 Trial

  Sulforafan

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Sulforafan increases the expression of SLC6A6 [22]

Drug in Phase 2 Trial

  Bisphenol A

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Bisphenol A inhibits the expression of SLC6A6 [25]

  Genistein

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Genistein increases the expression of SLC6A6 [15]

Drug in Phase 1 Trial

  Sodium arsenite

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Sodium arsenite increases the expression of SLC6A6 [27]

  Trichostatin A

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Trichostatin A increases the expression of SLC6A6 [28]

Natural Product

  Coal Ash

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Coal Ash inhibits the expression of SLC6A6 [18]

  Methyleugenol

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Methyleugenol increases the expression of SLC6A6 [23]

  Tobacco Smoke Pollution

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Tobacco Smoke Pollution increases the expression of SLC6A6 [29]

Traditional Medicine

  Jinfukang

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Jinfukang increases the expression of SLC6A6 [21]

Environmental toxicant

  Polychlorinated dibenzodioxin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Polychlorinated dibenzodioxin increases the expression of SLC6A6 [26]

Mycotoxins

  Aflatoxin B1

           3 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Aflatoxin B1 increases the expression of SLC6A6 [23]

  DT Modulation2

Aflatoxin B1 affects the expression of SLC6A6 protein [35]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

Aflatoxin B1 results in increased methylation of SLC6A6 intron [36]

Regulation Mechanism

Transcription Factor Info

  Zearalenone

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Zearalenone results in increased expression of SLC6A6 mRNA [3]

Regulation Mechanism

Transcription Factor Info

Carcinogen

  DT Modulation1

Arsenic affects the methylation of SLC6A6 gene [39]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

sodium arsenate results in increased abundance of Arsenic which results in increased expression of SLC6A6 mRNA [40]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

sodium arsenite results in increased abundance of Arsenic which results in increased expression of SLC6A6 mRNA [41]

Regulation Mechanism

Transcription Factor Info

  Benzo(a)pyrene

           4 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Benzo(a)pyrene increases the expression of SLC6A6 [23]

  Cadmium

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cadmium Chloride results in increased abundance of Cadmium which results in increased expression of SLC6A6 mRNA [47]

Regulation Mechanism

Transcription Factor Info

  Nickel

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Nickel results in increased expression of SLC6A6 mRNA [56]

Regulation Mechanism

Transcription Factor Info

Health and Environmental Toxicant

  Butyraldehyde

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Butyraldehyde increases the expression of SLC6A6 [19]

  tris(1,3-dichloro-2-propyl)phosphate

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

tris(1,3-dichloro-2-propyl)phosphate increases the expression of SLC6A6 [20]

  Perfluorooctane sulfonic acid

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Perfluorooctane sulfonic acid inhibits the expression of SLC6A6 [24]
References
1 Drinking-water arsenic exposure modulates gene expression in human lymphocytes from a U.S. population. Environ Health Perspect. 2008 Apr;116(4):524-31.
2 The genomic response of a human uterine endometrial adenocarcinoma cell line to 17alpha-ethynyl estradiol. Toxicol Sci. 2009 Jan;107(1):40-55.
3 Gene expression profiling in Ishikawa cells: a fingerprint for estrogen active compounds. Toxicol Appl Pharmacol. 2009 Apr 1;236(1):85-96.
4 Physiological and toxicological transcriptome changes in HepG2 cells exposed to copper. Physiol Genomics. 2009 Aug 7;38(3):386-401.
5 Dasatinib reverses cancer-associated fibroblasts (CAFs) from primary lung carcinomas to a phenotype comparable to that of normal fibroblasts. Mol Cancer. 2010 Jun 27;9:168.
6 A transcriptomics-based in vitro assay for predicting chemical genotoxicity in vivo. Carcinogenesis. 2012 Jul;33(7):1421-9.
7 Transcriptomics hit the target: Monitoring of ligand-activated and stress response pathways for chemical testing. Toxicol In Vitro. 2015 Dec 25;30(1 Pt A):7-18.
8 Definition of transcriptome-based indices for quantitative characterization of chemically disturbed stem cell development: introduction of the STOP-Toxukn and STOP-Toxukk tests. Arch Toxicol. 2017 Feb;91(2):839-864.
9 Low Doses of Cisplatin Induce Gene Alterations, Cell Cycle Arrest, and Apoptosis in Human Promyelocytic Leukemia Cells. Biomark Insights. 2016 Aug 24;11:113-21.
10 Multiple microRNAs function as self-protective modules in acetaminophen-induced hepatotoxicity in humans. Arch Toxicol. 2018 Feb;92(2):845-858.
11 THC exposure of human iPSC neurons impacts genes associated with neuropsychiatric disorders. Transl Psychiatry. 2018 Apr 25;8(1):89.
12 A long-wave UVA filter avobenzone induces obesogenic phenotypes in normal human epidermal keratinocytes and mesenchymal stem cells. Arch Toxicol. 2019 Jul;93(7):1903-1915.
13 Cell-based two-dimensional morphological assessment system to predict cancer drug-induced cardiotoxicity using human induced pluripotent stem cell-derived cardiomyocytes. Toxicol Appl Pharmacol. 2019 Nov 15;383:114761.
14 Temozolomide induces activation of Wnt/beta-catenin signaling in glioma cells via PI3K/Akt pathway: implications in glioma therapy. Cell Biol Toxicol. 2020 Jun;36(3):273-278.
15 Genistein and bisphenol A exposure cause estrogen receptor 1 to bind thousands of sites in a cell type-specific manner. Genome Res. 2012 Nov;22(11):2153-62.
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18 Endothelial effects of emission source particles: acute toxic response gene expression profiles. Toxicol In Vitro. 2009 Feb;23(1):67-77.
19 Integrated analysis of microRNA and mRNA expression profiles highlights aldehyde-induced inflammatory responses in cells relevant for lung toxicity. Toxicology. 2015 Aug 6;334:111-21.
20 Defensive and adverse energy-related molecular responses precede tris (1, 3-dichloro-2-propyl) phosphate cytotoxicity. J Appl Toxicol. 2016 May;36(5):649-58.
21 Activation of AIFM2 enhances apoptosis of human lung cancer cells undergoing toxicological stress. Toxicol Lett. 2016 Sep 6;258:227-236.
22 Transcriptome and DNA methylation changes modulated by sulforaphane induce cell cycle arrest, apoptosis, DNA damage, and suppression of proliferation in human liver cancer cells. Food Chem Toxicol. 2020 Feb;136:111047.
23 Identification of a transcriptomic signature of food-relevant genotoxins in human HepaRG hepatocarcinoma cells. Food Chem Toxicol. 2020 Jun;140:111297.
24 An assessment of serum-dependent impacts on intracellular accumulation and genomic response of per- and polyfluoroalkyl substances in a placental trophoblast model. Environ Toxicol. 2020 Dec;35(12):1395-1405.
25 Isobaric tags for relative and absolute quantitation-based proteomics analysis of the effect of ginger oil on bisphenol A-induced breast cancer cell proliferation. Oncol Lett. 2021 Feb;21(2):101.
26 Two persistent organic pollutants which act through different xenosensors (alpha-endosulfan and 2,3,7,8 tetrachlorodibenzo-p-dioxin) interact in a mixture and downregulate multiple genes involved in human hepatocyte lipid and glucose metabolism. Biochimie. 2015 Sep;116:79-91.
27 Dynamic alteration in miRNA and mRNA expression profiles at different stages of chronic arsenic exposure-induced carcinogenesis in a human cell culture model of skin cancer. Arch Toxicol. 2021 Jul;95(7):2351-2365.
28 A transcriptome-based classifier to identify developmental toxicants by stem cell testing: design, validation and optimization for histone deacetylase inhibitors. Arch Toxicol. 2015 Sep;89(9):1599-618.
29 Integration of transcriptome analysis with pathophysiological endpoints to evaluate cigarette smoke toxicity in an in vitro human airway tissue model. Arch Toxicol. 2021 May;95(5):1739-1761.
30 High-Throughput Transcriptomics of Nontumorigenic Breast Cells Exposed to Environmentally Relevant Chemicals. Environ Health Perspect. 2024;132(4):47002.
31 Early whole-genome transcriptional response induced by benzo[a]pyrene diol epoxide in a normal human cell line. Genomics. 2009;93(4):332-42.
32 Benzo[a]pyrene diol epoxide stimulates an inflammatory response in normal human lung fibroblasts through a p53 and JNK mediated pathway. Carcinogenesis. 2010;31(6):1149-57.
33 Integration of transcriptomics, proteomics and metabolomics data to reveal the biological mechanisms of abrin injury in human lung epithelial cells. Toxicol Lett. 2019;312:1-10.
34 Post-transcriptional air pollution oxidation to the cholesterol biosynthesis pathway promotes pulmonary stress phenotypes. Commun Biol. 2020;3(1):392.
35 Comparison of HepG2 and HepaRG by whole-genome gene expression analysis for the purpose of chemical hazard identification. Toxicol Sci. 2010 May;115(1):66-79.
36 Effect of aflatoxin B(1), benzo[a]pyrene, and methapyrilene on transcriptomic and epigenetic alterations in human liver HepaRG cells. Food Chem Toxicol. 2018;121:214-223.
37 Differential expression of microRNAs and their predicted targets in renal cells exposed to amphotericin B and its complex with copper (II) ions. Toxicol Mech Methods. 2017;27(7):537-543.
38 Integration of transcriptomic, proteomic and metabolomic data to reveal the biological mechanisms of AAI injury in renal epithelial cells. Toxicol In Vitro. 2021;70:105054.
39 Prenatal arsenic exposure and the epigenome: identifying sites of 5-methylcytosine alterations that predict functional changes in gene expression in newborn cord blood and subsequent birth outcomes. Toxicol Sci. 2015 Jan;143(1):97-106.
40 Effects of Inorganic Arsenic on Human Prostate Stem-Progenitor Cell Transformation, Autophagic Flux Blockade, and NRF2 Pathway Activation. Environ Health Perspect. 2020;128(6):67008.
41 Using transcriptomic signatures to elucidate individual and mixture effects of inorganic arsenic and manganese in human placental trophoblast HTR-8/SVneo cells. Toxicol Sci. 2025;203(2):216-226.
42 Indications for distinct pathogenic mechanisms of asbestos and silica through gene expression profiling of the response of lung epithelial cells. Hum Mol Genet. 2015;24(5):1374-89.
43 Reduction of CXC chemokine receptor 3 in an in vitro model of continuous exposure to asbestos in a human T-cell line, MT-2. Am J Respir Cell Mol Biol. 2011;45(3):470-9.
44 Air pollution and DNA methylation alterations in lung cancer: A systematic and comparative study. Oncotarget. 2017;8(1):1369-1391.
45 Lapachone induces ferroptosis of colorectal cancer cells via NCOA4-mediated ferritinophagy by activating JNK pathway. Chem Biol Interact. 2024;389:110866.
46 DNA methylome-wide alterations associated with estrogen receptor-dependent effects of bisphenols in breast cancer. Clin Epigenetics. 2019;11(1):138.
47 Cadmium Exposure Inhibits Branching Morphogenesis and Causes Alterations Consistent With HIF-1 Inhibition in Human Primary Breast Organoids. Toxicol Sci. 2018;164(2):592-602.
48 Cadmium, cobalt and lead cause stress response, cell cycle deregulation and increased steroid as well as xenobiotic metabolism in primary normal human bronchial epithelial cells which is coordinated by at least nine transcription factors. Arch Toxicol. 2008;82(8):513-24.
49 Effect of Garlic Organic Sulfides on Gene Expression Profiling in HepG2 Cells and Its Biological Function Analysis by Ingenuity Pathway Analysis System and Bio-Plex-Based Assays. Mediators Inflamm. 2021;2021:7681252.
50 Association between Organophosphate Ester Exposure and Insulin Resistance with Glycometabolic Disorders among Older Chinese Adults 60-69 Years of Age: Evidence from the China BAPE Study. Environ Health Perspect. 2023;131(4):47009.
51 Epigallocatechin-3-gallate (EGCG) protects against chromate-induced toxicity in vitro. Toxicol Appl Pharmacol. 2012 Jan 15;258(2):166-75.
52 Long-term estrogen exposure promotes carcinogen bioactivation, induces persistent changes in gene expression, and enhances the tumorigenicity of MCF-7 human breast cancer cells. Toxicol Appl Pharmacol. 2009 Nov 1;240(3):355-66.
53 Estrogen receptor beta binds to and regulates three distinct classes of target genes. J Biol Chem. 2010;285(29):22059-66.
54 Dose- and Time-Dependent Transcriptional Response of Ishikawa Cells Exposed to Genistein. Toxicol Sci. 2016 May;151(1):71-87.
55 TMT-based quantitative proteomic analysis reveals the underlying mechanisms of glycidyl methacrylate-induced 16HBE cell malignant transformation. Toxicology. 2023;485:153427.
56 Molecular profiling of contact dermatitis skin identifies allergen-dependent differences in immune response. J Allergy Clin Immunol. 2014;134(2):362-72.
57 Gene expression changes in human lung cells exposed to arsenic, chromium, nickel or vanadium indicate the first steps in cancer. Metallomics. 2012 Aug;4(8):784-93.
58 Ozone exposure and blood transcriptome: A randomized, controlled, crossover trial among healthy adults. Environ Int. 2022;163:107242.
59 Determination of in vitro hepatotoxic potencies of a series of perfluoroalkyl substances (PFASs) based on gene expression changes in HepaRG liver cells. Arch Toxicol. 2023;97(4):1113-1131.
60 Perfluoroalkyl substances (PFASs) decrease the expression of recombination-activating genes (RAG1 and RAG2) in human B lymphoma Namalwa cells. Arch Toxicol. 2022;97(2):457-68.
61 Genomic and proteomic analysis of the inhibition of synthesis and secretion of aldosterone hormone induced by quinocetone in NCI-H295R cells. Toxicology. 2016;350-352:1-14.
62 High-throughput, quantitative assessment of the effects of low-dose silica nanoparticles on lung cells: grasping complex toxicity with a great depth of field. BMC Genomics. 2015;16(1):315.
63 Inorganic arsenic alters expression of immune and stress response genes in activated primary human T lymphocytes. Mol Immunol. 2011;48(6-7):956-65.
64 Cross-species comparisons of transcriptomic alterations in human and rat primary hepatocytes exposed to 2,3,7,8-tetrachlorodibenzo-p-dioxin. Toxicol Sci. 2012 May;127(1):199-215.
65 Integrative omics data analyses of repeated dose toxicity of valproic acid in vitro reveal new mechanisms of steatosis induction. Toxicology. 2018 Jan 15;393:160-170.

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