General Information of Drug Transporter (DT)
DT ID DTD0525 Transporter Info
Gene Name KCNJ6
Transporter Name Inward rectifier K(+) channel Kir3.2
Gene ID
3763
UniProt ID
P48051
Exogenous factors (drugs, dietary constituents, etc.) Modulation of This DT (EGM)

Chemical Compound

  DT Modulation1

Cisplatin co-treated with jinfukang results in decreased expression of KCNJ6 mRNA [3]

Regulation Mechanism

Transcription Factor Info

  1-Methyl-4-phenylpyridinium

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

  DT Modulation1

KCNJ6 protein promotes the reaction SNCA protein results in increased susceptibility to 1-Methyl-4-phenylpyridinium [9]

Regulation Mechanism

Transcription Factor Info

  Benzo(a)pyrene

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

  DT Modulation1

Benzo(a)pyrene affects the methylation of KCNJ6 5' UTR [11]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Benzo(a)pyrene affects the methylation of KCNJ6 intron [12]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

Benzo(a)pyrene results in decreased expression of KCNJ6 mRNA [13]

Regulation Mechanism

Transcription Factor Info

  DT Modulation4

Benzo(a)pyrene results in increased methylation of KCNJ6 exon [11]

Regulation Mechanism

Transcription Factor Info

  DT Modulation5

Benzo(a)pyrene results in increased methylation of KCNJ6 promoter [11]

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 co-treated with Fulvestrant results in increased methylation of KCNJ6 gene [14]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

bisphenol A results in increased methylation of KCNJ6 gene [14]

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 KCNJ6 gene [14]

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 decreased expression of KCNJ6 mRNA [6]

Regulation Mechanism

Transcription Factor Info

  Catechin

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

  DT Modulation1

Catechin co-treated with Grape Seed Proanthocyanidins results in decreased expression of KCNJ6 mRNA [15]

Regulation Mechanism

Transcription Factor Info

  Copper

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

  DT Modulation1

NSC 689534 binds to Copper which results in decreased expression of KCNJ6 mRNA [16]

Regulation Mechanism

Transcription Factor Info

  Crack Cocaine

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

  DT Modulation1

Crack Cocaine results in increased expression of KCNJ6 mRNA [1]

Regulation Mechanism

Transcription Factor Info

  Fulvestrant

           2 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 KCNJ6 gene [14]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Fulvestrant results in increased methylation of KCNJ6 gene [14]

Regulation Mechanism

Transcription Factor Info

  methylmercuric chloride

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

  DT Modulation1

methylmercuric chloride results in decreased expression of KCNJ6 mRNA [17]

Regulation Mechanism

Transcription Factor Info

  NSC 689534

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

  DT Modulation1

NSC 689534 binds to Copper which results in decreased expression of KCNJ6 mRNA [16]

Regulation Mechanism

Transcription Factor Info

  Potassium

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

  DT Modulation1

KCNJ6 protein results in increased transport of Potassium [18]

Regulation Mechanism

Transcription Factor Info

  Tetrachlorodibenzodioxin

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

  DT Modulation1

Tetrachlorodibenzodioxin results in increased expression of KCNJ6 mRNA [4]

Regulation Mechanism

Transcription Factor Info

  Thallium

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

  DT Modulation1

GRM8 protein results in increased activity of KCNJ3 protein binds to KCNJ6 protein which results in increased transport of Thallium [19]

Regulation Mechanism

Transcription Factor Info

  theaflavin-3,3'-digallate

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

  DT Modulation1

theaflavin-3,3'-digallate affects the expression of KCNJ6 mRNA [20]

Regulation Mechanism

Transcription Factor Info

Mycotoxins

  Aflatoxin B1

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

  DT Modulation1

Aflatoxin B1 results in decreased methylation of KCNJ6 gene [10]

Regulation Mechanism

Transcription Factor Info

Approved Drug

  Cocaine

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

  DT Modulation1

Cocaine inhibits the expression of KCNJ6 [1]

  Valproic Acid

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

  DT Modulation1

Valproic Acid affects the expression of KCNJ6 [2]

  Cisplatin

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

  DT Modulation1

Cisplatin inhibits the expression of KCNJ6 [3]

Investigative Drug

  1-Chloro-1,2,2-trifluorocyclobutane

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

  DT Modulation1

1-Chloro-1,2,2-trifluorocyclobutane inhibits the activity of KCNJ6 [7]

  PIP2

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

  DT Modulation1

PIP2 activates the activity of KCNJ6 [8]

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 KCNJ6 [4]

Health and Environmental Toxicant

  Lead

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

  DT Modulation1

Lead increases the expression of KCNJ6 [5]

  Butyraldehyde

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

  DT Modulation1

Butyraldehyde inhibits the expression of KCNJ6 [6]
References
1 Transcriptional profiling in the human prefrontal cortex: evidence for two activational states associated with cocaine abuse. Pharmacogenomics J. 2003;3(1):27-40.
2 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.
3 Activation of AIFM2 enhances apoptosis of human lung cancer cells undergoing toxicological stress. Toxicol Lett. 2016 Sep 6;258:227-236.
4 Use of cDNA microarrays to analyze dioxin-induced changes in human liver gene expression. Toxicol Lett. 2001 Jul 6;122(3):189-203.
5 Correlations of gene expression with blood lead levels in children with autism compared to typically developing controls. Neurotox Res. 2011 Jan;19(1):1-13.
6 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.
7 Differential effects of general anesthetics on G protein-coupled inwardly rectifying and other potassium channels. Anesthesiology. 2001 Jul;95(1):144-53.
8 Direct activation of inward rectifier potassium channels by PIP2 and its stabilization by Gbetagamma. Nature. 1998 Feb 19;391(6669):803-6.
9 Cell type-specific gene expression of midbrain dopaminergic neurons reveals molecules involved in their vulnerability and protection. Hum Mol Genet. 2005;14(13):1709-25.
10 Aflatoxin B1 induces persistent epigenomic effects in primary human hepatocytes associated with hepatocellular carcinoma. Toxicology. 2016 Mar 28;350-352:31-9.
11 Air pollution and DNA methylation alterations in lung cancer: A systematic and comparative study. Oncotarget. 2017;8(1):1369-1391.
12 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.
13 Regulation of long non-coding RNA expression by aryl hydrocarbon receptor activation. Toxicol Lett. 2024;391:13-25.
14 DNA methylome-wide alterations associated with estrogen receptor-dependent effects of bisphenols in breast cancer. Clin Epigenetics. 2019;11(1):138.
15 Dietary flavanols modulate the transcription of genes associated with cardiovascular pathology without changes in their DNA methylation state. PLoS One. 2014;9(4):e95527.
16 A copper chelate of thiosemicarbazone NSC 689534 induces oxidative/ER stress and inhibits tumor growth in vitro and in vivo. Free Radic Biol Med. 2011 Jan 1;50(1):110-21.
17 A 3-dimensional human embryonic stem cell (hESC)-derived model to detect developmental neurotoxicity of nanoparticles. Arch Toxicol. 2013;87(4):721-33.
18 Does acetaldehyde mediate ethanol action in the central nervous system?. Alcohol Clin Exp Res. 2001;25(11):1570-5.
19 Discovery, characterization, and structure-activity relationships of an inhibitor of inward rectifier potassium (Kir) channels with preference for Kir2.3, Kir3.x, and Kir7.1. Front Pharmacol. 2011;2:75.
20 Theaflavin 3, 3'-Digallate Delays Ovarian Aging by Improving Oocyte Quality and Regulating Granulosa Cell Function. Oxid Med Cell Longev. 2021;2021:7064179.

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