General Information of Drug Transporter (DT)
DT ID DTD0275 Transporter Info
Gene Name SLC30A6
Transporter Name Zinc transporter 6
Gene ID
55676
UniProt ID
Q6NXT4
Exogenous factors (drugs, dietary constituents, etc.) Modulation of This DT (EGM)

Chemical Compound

  DT Modulation1

Cyclosporine results in increased expression of SLC30A6 mRNA [20]

Regulation Mechanism

Transcription Factor Info

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

           1 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 SLC30A6 mRNA [12]

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 SLC30A6 mRNA [13]

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 SLC30A6 mRNA [15]

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 SLC30A6 mRNA [15]

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 SLC30A6 mRNA [15]

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 SLC30A6 mRNA [15]

Regulation Mechanism

Transcription Factor Info

  beta-lapachone

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

  DT Modulation1

beta-lapachone results in decreased expression of SLC30A6 mRNA [18]

Regulation Mechanism

Transcription Factor Info

  bisphenol A

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

  DT Modulation1

bisphenol A results in decreased expression of SLC30A6 protein [11]

Regulation Mechanism

Transcription Factor Info

  Cadmium Chloride

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

  DT Modulation1

Cadmium Chloride results in decreased expression of SLC30A6 mRNA [19]

Regulation Mechanism

Transcription Factor Info

  dicrotophos

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

  DT Modulation1

dicrotophos results in decreased expression of SLC30A6 mRNA [8]

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 SLC30A6 mRNA [21]

Regulation Mechanism

Transcription Factor Info

  ferrous chloride

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

  DT Modulation1

ferrous chloride results in decreased expression of SLC30A6 mRNA [22]

Regulation Mechanism

Transcription Factor Info

  Lactic Acid

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

  DT Modulation1

Lactic Acid results in decreased expression of SLC30A6 mRNA [10]

Regulation Mechanism

Transcription Factor Info

  Manganese

           1 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 co-treated with manganese chloride results in increased abundance of Manganese results in increased expression of SLC30A6 mRNA [17]

Regulation Mechanism

Transcription Factor Info

  manganese chloride

           1 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 co-treated with manganese chloride results in increased abundance of Manganese results in increased expression of SLC30A6 mRNA [17]

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 SLC30A6 mRNA [15]

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 SLC30A6 mRNA [15]

Regulation Mechanism

Transcription Factor Info

  N,N,N',N'-tetrakis(2-pyridylmethyl)ethylenediamine

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

  DT Modulation1

N,N,N',N'-tetrakis(2-pyridylmethyl)ethylenediamine co-treated with ochratoxin A results in decreased expression of SLC30A6 mRNA [24]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

N,N,N',N'-tetrakis(2-pyridylmethyl)ethylenediamine co-treated with Zinc results in increased expression of SLC30A6 mRNA [24]

Regulation Mechanism

Transcription Factor Info

  Ozone

           3 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 SLC30A6 mRNA [15]

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 SLC30A6 mRNA [15]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

Volatile Organic Compounds co-treated with Ozone results in increased oxidation of SLC30A6 mRNA [15]

Regulation Mechanism

Transcription Factor Info

  sodium arsenite

           3 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 co-treated with manganese chloride results in increased abundance of Manganese results in increased expression of SLC30A6 mRNA [17]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

sodium arsenite results in increased abundance of Arsenic which results in increased expression of SLC30A6 mRNA [17]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

sodium arsenite results in increased expression of SLC30A6 mRNA [19]

Regulation Mechanism

Transcription Factor Info

  Thiram

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

  DT Modulation1

Thiram results in decreased expression of SLC30A6 mRNA [19]

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 SLC30A6 mRNA [21]

Regulation Mechanism

Transcription Factor Info

  Zinc

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

  DT Modulation1

N,N,N',N'-tetrakis(2-pyridylmethyl)ethylenediamine co-treated with Zinc results in increased expression of SLC30A6 mRNA [24]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

SLC30A6 protein results in increased transport of Zinc [25]

Regulation Mechanism

Transcription Factor Info

Carcinogen

  Arsenic

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

  DT Modulation1

Arsenic affects the methylation of SLC30A6 gene [16]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

sodium arsenite results in increased abundance of Arsenic co-treated with manganese chloride results in increased abundance of Manganese results in increased expression of SLC30A6 mRNA [17]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

sodium arsenite results in increased abundance of Arsenic which results in increased expression of SLC30A6 mRNA [17]

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 SLC30A6 mRNA [23]

Regulation Mechanism

Transcription Factor Info

Mycotoxins

  ochratoxin A

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

  DT Modulation1

N,N,N',N'-tetrakis(2-pyridylmethyl)ethylenediamine co-treated with ochratoxin A results in decreased expression of SLC30A6 mRNA [24]

Regulation Mechanism

Transcription Factor Info

Approved Drug

  Calcitriol

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

  DT Modulation1

Calcitriol inhibits the expression of SLC30A6 [1]

  Acetaminophen

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

  DT Modulation1

Acetaminophen inhibits the expression of SLC30A6 [2]

  DT Modulation2

Acetaminophen results in increased expression of SLC30A6 mRNA [14]

Regulation Mechanism

Transcription Factor Info

  Valproic Acid

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

  DT Modulation1

Valproic Acid increases the expression of SLC30A6 [3]

  Cyclosporine

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

  DT Modulation1

Cyclosporine inhibits the expression of SLC30A6 [4]

  Testosterone

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

  DT Modulation1

Testosterone inhibits the expression of SLC30A6 [5]

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 SLC30A6 [11]

Investigative Drug

  Milchsaure

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

  DT Modulation1

Milchsaure inhibits the expression of SLC30A6 [10]

Traditional Medicine

  Jinfukang

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

  DT Modulation1

Jinfukang inhibits the expression of SLC30A6 [7]

Plant Extract

  Grape Seed Proanthocyanidins

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

  DT Modulation1

Grape Seed Proanthocyanidins increases the expression of SLC30A6 [6]

Pesticide/Insecticide

  Dicrotophos

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

  DT Modulation1

Dicrotophos inhibits the expression of SLC30A6 [8]

Health and Environmental Toxicant

  Lead

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

  DT Modulation1

Lead affects the expression of SLC30A6 [9]
References
1 Cellular zinc homeostasis is a regulator in monocyte differentiation of HL-60 cells by 1 alpha,25-dihydroxyvitamin D3. J Leukoc Biol. 2010 May;87(5):833-44.
2 Gene expression analysis of precision-cut human liver slices indicates stable expression of ADME-Tox related genes. Toxicol Appl Pharmacol. 2011 May 15;253(1):57-69.
3 Human embryonic stem cell-derived test systems for developmental neurotoxicity: a transcriptomics approach. Arch Toxicol. 2013 Jan;87(1):123-43.
4 Integrating multiple omics to unravel mechanisms of Cyclosporin A induced hepatotoxicity in vitro. Toxicol In Vitro. 2015 Apr;29(3):489-501.
5 The exosome-like vesicles derived from androgen exposed-prostate stromal cells promote epithelial cells proliferation and epithelial-mesenchymal transition. Toxicol Appl Pharmacol. 2021 Jan 15;411:115384.
6 Dietary catechins and procyanidins modulate zinc homeostasis in human HepG2 cells. J Nutr Biochem. 2011 Feb;22(2):153-63.
7 Activation of AIFM2 enhances apoptosis of human lung cancer cells undergoing toxicological stress. Toxicol Lett. 2016 Sep 6;258:227-236.
8 Molecular mechanisms of discrotophos-induced toxicity in HepG2 cells: The role of CSA in oxidative stress. Food Chem Toxicol. 2017 May;103:253-260.
9 RNA-Seq of Human Neural Progenitor Cells Exposed to Lead (Pb) Reveals Transcriptome Dynamics, Splicing Alterations and Disease Risk Associations. Toxicol Sci. 2017 Sep 1;159(1):251-265.
10 Transcriptional profiling of lactic acid treated reconstructed human epidermis reveals pathways underlying stinging and itch. Toxicol In Vitro. 2019 Jun;57:164-173.
11 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.
12 Early whole-genome transcriptional response induced by benzo[a]pyrene diol epoxide in a normal human cell line. Genomics. 2009;93(4):332-42.
13 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.
14 Predictive toxicology using systemic biology and liver microfluidic "on chip" approaches: application to acetaminophen injury. Toxicol Appl Pharmacol. 2012 Mar 15;259(3):270-80.
15 Post-transcriptional air pollution oxidation to the cholesterol biosynthesis pathway promotes pulmonary stress phenotypes. Commun Biol. 2020;3(1):392.
16 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.
17 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.
18 Lapachone induces ferroptosis of colorectal cancer cells via NCOA4-mediated ferritinophagy by activating JNK pathway. Chem Biol Interact. 2024;389:110866.
19 High-Throughput Transcriptomics of Nontumorigenic Breast Cells Exposed to Environmentally Relevant Chemicals. Environ Health Perspect. 2024;132(4):47002.
20 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.
21 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.
22 Adaptive cellular response of the substantia nigra dopaminergic neurons upon age-dependent iron accumulation. Aging Cell. 2022;21(9):e13694.
23 Patients with atopic dermatitis have attenuated and distinct contact hypersensitivity responses to common allergens in skin. J Allergy Clin Immunol. 2015;135(3):712-20.
24 Intracellular zinc stores protect the intestinal epithelium from Ochratoxin A toxicity. Toxicol In Vitro. 2009 Dec;23(8):1516-21.
25 Expression of ZnT and ZIP zinc transporters in the human RPE and their regulation by neurotrophic factors. Invest Ophthalmol Vis Sci. 2008;49(3):1221-31.

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