General Information of Drug Transporter (DT)
DT ID DTD0339 Transporter Info
Gene Name SLC39A11
Transporter Name Zinc transporter ZIP11
Gene ID
201266
UniProt ID
Q8N1S5
Exogenous factors (drugs, dietary constituents, etc.) Modulation of This DT (EGM)

Chemical Compound

  DT Modulation1

Calcitriol results in increased expression of SLC39A11 mRNA [2]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Testosterone co-treated with Calcitriol results in increased expression of SLC39A11 mRNA [2]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Testosterone co-treated with Calcitriol results in increased expression of SLC39A11 mRNA [2]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Copper Sulfate results in increased expression of SLC39A11 mRNA [7]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

NOG protein co-treated with Valproic Acid 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 SLC39A11 mRNA [8]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Valproic Acid affects the expression of SLC39A11 mRNA [35]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Benzo(a)pyrene affects the methylation of SLC39A11 intron [24]

Regulation Mechanism

Transcription Factor Info

  1-Methyl-3-isobutylxanthine

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

  DT Modulation1

INS protein co-treated with Dexamethasone co-treated with 1-Methyl-3-isobutylxanthine co-treated with Indomethacin co-treated with bisphenol A results in increased expression of SLC39A11 mRNA [20]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

INS protein co-treated with Dexamethasone co-treated with 1-Methyl-3-isobutylxanthine co-treated with Indomethacin co-treated with bisphenol F results in increased expression of SLC39A11 mRNA [20]

Regulation Mechanism

Transcription Factor Info

  4-(4-((5-(4,5-dimethyl-2-nitrophenyl)-2-furanyl)methylene)-4,5-dihydro-3-methyl-5-oxo-1H-pyrazol-1-yl)benzoic acid

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

  DT Modulation1

4-(4-((5-(4,5-dimethyl-2-nitrophenyl)-2-furanyl)methylene)-4,5-dihydro-3-methyl-5-oxo-1H-pyrazol-1-yl)benzoic acid results in increased expression of SLC39A11 mRNA [14]

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 Valproic Acid 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 SLC39A11 mRNA [8]

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 SLC39A11 mRNA [21]

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 SLC39A11 mRNA [22]

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 decreased methylation of SLC39A11 gene [26]

Regulation Mechanism

Transcription Factor Info

  benzo(e)pyrene

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

  DT Modulation1

benzo(e)pyrene results in decreased methylation of SLC39A11 intron [24]

Regulation Mechanism

Transcription Factor Info

  bisphenol A

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

  DT Modulation1

bisphenol A results in increased methylation of SLC39A11 gene [27]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

INS protein co-treated with Dexamethasone co-treated with 1-Methyl-3-isobutylxanthine co-treated with Indomethacin co-treated with bisphenol A results in increased expression of SLC39A11 mRNA [20]

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

INS protein co-treated with Dexamethasone co-treated with 1-Methyl-3-isobutylxanthine co-treated with Indomethacin co-treated with bisphenol F results in increased expression of SLC39A11 mRNA [20]

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 SLC39A11 gene [27]

Regulation Mechanism

Transcription Factor Info

  bufotalin

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

  DT Modulation1

bufotalin results in decreased expression of SLC39A11 mRNA [28]

Regulation Mechanism

Transcription Factor Info

  Dexamethasone

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

  DT Modulation1

INS protein co-treated with Dexamethasone co-treated with 1-Methyl-3-isobutylxanthine co-treated with Indomethacin co-treated with bisphenol A results in increased expression of SLC39A11 mRNA [20]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

INS protein co-treated with Dexamethasone co-treated with 1-Methyl-3-isobutylxanthine co-treated with Indomethacin co-treated with bisphenol F results in increased expression of SLC39A11 mRNA [20]

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 SLC39A11 mRNA [30]

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 Valproic Acid 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 SLC39A11 mRNA [8]

Regulation Mechanism

Transcription Factor Info

  ICG 001

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

  DT Modulation1

ICG 001 results in increased expression of SLC39A11 mRNA [14]

Regulation Mechanism

Transcription Factor Info

  Indomethacin

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

  DT Modulation1

INS protein co-treated with Dexamethasone co-treated with 1-Methyl-3-isobutylxanthine co-treated with Indomethacin co-treated with bisphenol A results in increased expression of SLC39A11 mRNA [20]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

INS protein co-treated with Dexamethasone co-treated with 1-Methyl-3-isobutylxanthine co-treated with Indomethacin co-treated with bisphenol F results in increased expression of SLC39A11 mRNA [20]

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 SLC39A11 mRNA [16]

Regulation Mechanism

Transcription Factor Info

  Methapyrilene

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

  DT Modulation1

Methapyrilene results in decreased methylation of SLC39A11 intron [24]

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 decreased expression of SLC39A11 mRNA [17]

Regulation Mechanism

Transcription Factor Info

  Methyl Methanesulfonate

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

  DT Modulation1

Methyl Methanesulfonate results in decreased expression of SLC39A11 mRNA [13]

Regulation Mechanism

Transcription Factor Info

  N-acetyl-4-benzoquinoneimine

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

  DT Modulation1

SLC39A11 gene SNP affects the susceptibility to N-acetyl-4-benzoquinoneimine [31]

Regulation Mechanism

Transcription Factor Info

  Okadaic Acid

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

  DT Modulation1

Okadaic Acid results in decreased expression of SLC39A11 mRNA [32]

Regulation Mechanism

Transcription Factor Info

  Silicon Dioxide

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

  DT Modulation1

Silicon Dioxide analog results in decreased expression of SLC39A11 mRNA [34]

Regulation Mechanism

Transcription Factor Info

  sodium arsenite

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

  DT Modulation1

sodium arsenite results in increased expression of SLC39A11 mRNA [12]

Regulation Mechanism

Transcription Factor Info

  Zinc

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

  DT Modulation1

SLC39A11 protein results in increased transport of Zinc [36]

Regulation Mechanism

Transcription Factor Info

Approved Drug

  Calcitriol

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

  DT Modulation1

Calcitriol inhibits the expression of SLC39A11 [1]

  Testosterone

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

  DT Modulation1

Testosterone increases the expression of SLC39A11 [2]

  Cisplatin

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

  DT Modulation1

Cisplatin inhibits the expression of SLC39A11 [3]

  Cyclosporine

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

  DT Modulation1

Cyclosporine increases the expression of SLC39A11 [4]

  Acetaminophen

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

  DT Modulation1

Acetaminophen inhibits the expression of SLC39A11 [5]

  Tretinoin

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

  DT Modulation1

Tretinoin inhibits the expression of SLC39A11 [6]

  Copper Sulfate

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

  DT Modulation1

Copper Sulfate inhibits the expression of SLC39A11 [7]

  Valproic Acid

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

  DT Modulation1

Valproic Acid increases the expression of SLC39A11 [8]

Drug in Phase 1 Trial

  Quercetin

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

  DT Modulation1

Quercetin inhibits the expression of SLC39A11 [10]

  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 SLC39A11 [12]

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 SLC39A11 [16]

Patented Pharmaceutical Agent

  ICG-001

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

  DT Modulation1

ICG-001 increases the expression of SLC39A11 [14]

Natural Product

  Thapsigargin

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

  DT Modulation1

Thapsigargin increases the expression of SLC39A11 [11]

  Methyleugenol

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

  DT Modulation1

Methyleugenol inhibits the expression of SLC39A11 [17]

  Tobacco Smoke Pollution

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

  DT Modulation1

Tobacco Smoke Pollution inhibits the expression of SLC39A11 [19]

  Caffeine

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

  DT Modulation1

Caffeine results in decreased phosphorylation of SLC39A11 protein [29]

Regulation Mechanism

Transcription Factor Info

  Resveratrol

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

  DT Modulation1

Plant Extracts co-treated with Resveratrol results in increased expression of SLC39A11 mRNA [33]

Regulation Mechanism

Transcription Factor Info

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 SLC39A11 [15]

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 inhibits the expression of SLC39A11 [9]

Mycotoxins

  Aflatoxin B1

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

  DT Modulation1

Aflatoxin B1 inhibits the expression of SLC39A11 [18]

  DT Modulation2

Aflatoxin B1 affects the expression of SLC39A11 protein [23]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

Aflatoxin B1 results in increased methylation of SLC39A11 intron [24]

Regulation Mechanism

Transcription Factor Info

  aflatoxin B2

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

  DT Modulation1

aflatoxin B2 results in decreased methylation of SLC39A11 intron [24]

Regulation Mechanism

Transcription Factor Info

Acute Toxic Substance

  Formaldehyde

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

  DT Modulation1

Formaldehyde inhibits the expression of SLC39A11 [13]

Carcinogen

  Benzo(a)pyrene

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

  DT Modulation1

Benzo(a)pyrene inhibits the expression of SLC39A11 [17]

  Arsenic

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

  DT Modulation1

Arsenic affects the methylation of SLC39A11 gene [25]

Regulation Mechanism

Transcription Factor Info
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 Effects of 1alpha,25 dihydroxyvitamin D3 and testosterone on miRNA and mRNA expression in LNCaP cells. Mol Cancer. 2011 May 18;10:58.
3 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.
4 Integrative "-Omics" Analysis in Primary Human Hepatocytes Unravels Persistent Mechanisms of Cyclosporine A-Induced Cholestasis. Chem Res Toxicol. 2016 Dec 19;29(12):2164-2174.
5 Multiple microRNAs function as self-protective modules in acetaminophen-induced hepatotoxicity in humans. Arch Toxicol. 2018 Feb;92(2):845-858.
6 Transcriptional and Metabolic Dissection of ATRA-Induced Granulocytic Differentiation in NB4 Acute Promyelocytic Leukemia Cells. Cells. 2020 Nov 5;9(11):2423.
7 Extremely low copper concentrations affect gene expression profiles of human prostate epithelial cell lines. Chem Biol Interact. 2010 Oct 6;188(1):214-9.
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 Dietary catechins and procyanidins modulate zinc homeostasis in human HepG2 cells. J Nutr Biochem. 2011 Feb;22(2):153-63.
10 Comparison of phenotypic and transcriptomic effects of false-positive genotoxins, true genotoxins and non-genotoxins using HepG2 cells. Mutagenesis. 2011 Sep;26(5):593-604.
11 Endoplasmic reticulum stress impairs insulin signaling through mitochondrial damage in SH-SY5Y cells. Neurosignals. 2012;20(4):265-80.
12 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.
13 Characterization of formaldehyde's genotoxic mode of action by gene expression analysis in TK6 cells. Arch Toxicol. 2013 Nov;87(11):1999-2012.
14 Altering cancer transcriptomes using epigenomic inhibitors. Epigenetics Chromatin. 2015 Feb 24;8:9.
15 Activation of AIFM2 enhances apoptosis of human lung cancer cells undergoing toxicological stress. Toxicol Lett. 2016 Sep 6;258:227-236.
16 Transcriptional profiling of lactic acid treated reconstructed human epidermis reveals pathways underlying stinging and itch. Toxicol In Vitro. 2019 Jun;57:164-173.
17 Identification of a transcriptomic signature of food-relevant genotoxins in human HepaRG hepatocarcinoma cells. Food Chem Toxicol. 2020 Jun;140:111297.
18 Aflatoxin B1 induces persistent epigenomic effects in primary human hepatocytes associated with hepatocellular carcinoma. Toxicology. 2016 Mar 28;350-352:31-9.
19 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.
20 Low-dose exposure to bisphenols A, F and S of human primary adipocyte impacts coding and non-coding RNA profiles. PLoS One. 2017;12(6):e0179583.
21 New insights into BaP-induced toxicity: role of major metabolites in transcriptomics and contribution to hepatocarcinogenesis. Arch Toxicol. 2016 Jun;90(6):1449-58.
22 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.
23 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.
24 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.
25 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.
26 DNA methylation profiling of asbestos-treated MeT5A cell line reveals novel pathways implicated in asbestos response. Arch Toxicol. 2018;92(5):1785-1795.
27 DNA methylome-wide alterations associated with estrogen receptor-dependent effects of bisphenols in breast cancer. Clin Epigenetics. 2019;11(1):138.
28 Silencing LINC01547 induces hepatocellular carcinoma cell apoptosis and metastasis inhibition via the ADAR1/FAK and miR-146b-5p/RAC1 axes. Apoptosis. 2025;30(3-4):936-954.
29 Quantitative phosphoproteomics reveal cellular responses from caffeine, coumarin and quercetin in treated HepG2 cells. Toxicol Appl Pharmacol. 2022;449:116110.
30 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.
31 Acetaminophen-NAPQI hepatotoxicity: a cell line model system genome-wide association study. Toxicol Sci. 2011;120(1):33-41.
32 A multi-omics approach to elucidate okadaic acid-induced changes in human HepaRG hepatocarcinoma cells. Arch Toxicol. 2024;98(9):2919-2935.
33 One-year supplementation with a grape extract containing resveratrol modulates inflammatory-related microRNAs and cytokines expression in peripheral blood mononuclear cells of type 2 diabetes and hypertensive patients with coronary artery disease. Pharmacol Res. 2013;72:69-82.
34 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.
35 Gene Expression Regulation and Pathway Analysis After Valproic Acid and Carbamazepine Exposure in a Human Embryonic Stem Cell-Based Neurodevelopmental Toxicity Assay. Toxicol Sci. 2015 Aug;146(2):311-20.
36 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.

If you find any error in data or bug in web service, please kindly report it to Dr. Li and Dr. Fu.