General Information of Drug Transporter (DT)
DT ID DTD0380 Transporter Info
Gene Name SLC4A1
Transporter Name Anion exchange protein 1
Gene ID
6521
UniProt ID
P02730

Transcriptional Regulation of This DT (TSR)

TF Superclass 1: Basic domains

      Class 1.1: Basic leucine zipper factors

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        CEBPD 

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       Transcriptional Phenomenon 1

Direct binding to SLC4A1 gene [1]

TF Protein Name

CCAAT/enhancer-binding protein delta Transcription Factor Info

Tissue

Bone marrow

Related DT Changes

Direct regulating

Experiment method

TF-transporter regulations were collected from ChIP-Seq datasets.

Detailed Description

CCAAT/enhancer-binding protein delta (CEBPD) can directly bind to the SLC4A1 gene, which in turn affects the expression or function of the drug transporter Anion exchange protein 1.

      Class 1.2: Basic helix-loop-helix factors

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        MYOD1 

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       Transcriptional Phenomenon 1

Direct binding to SLC4A1 gene [1]

TF Protein Name

Myoblast determination protein 1 Transcription Factor Info

Tissue

Myotube

Related DT Changes

Direct regulating

Experiment method

TF-transporter regulations were collected from ChIP-Seq datasets.

Detailed Description

Myoblast determination protein 1 (MYOD1) can directly bind to the SLC4A1 gene, which in turn affects the expression or function of the drug transporter Anion exchange protein 1.

        TCF3 

Click to Show/Hide to Show 1 Transcriptional Phenomena      

       Transcriptional Phenomenon 1

Direct binding to SLC4A1 gene [1]

TF Protein Name

Transcription factor E2-alpha Transcription Factor Info

Tissue

Blood

Related DT Changes

Direct regulating

Experiment method

TF-transporter regulations were collected from ChIP-Seq datasets.

Detailed Description

Transcription factor E2-alpha (TCF3) can directly bind to the SLC4A1 gene, which in turn affects the expression or function of the drug transporter Anion exchange protein 1.

        USF1 

Click to Show/Hide to Show 1 Transcriptional Phenomena      

       Transcriptional Phenomenon 1

Direct binding to SLC4A1 gene [1]

TF Protein Name

Upstream stimulatory factor 1 Transcription Factor Info

Tissue

Bone marrow

Related DT Changes

Direct regulating

Experiment method

TF-transporter regulations were collected from ChIP-Seq datasets.

Detailed Description

Upstream stimulatory factor 1 (USF1) can directly bind to the SLC4A1 gene, which in turn affects the expression or function of the drug transporter Anion exchange protein 1.

      Class 1.3: Basic helix-span-helix factors

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        TFAP2C 

Click to Show/Hide to Show 1 Transcriptional Phenomena      

       Transcriptional Phenomenon 1

Direct binding to SLC4A1 gene [1]

TF Protein Name

Transcription factor AP-2 gamma Transcription Factor Info

Tissue

Breast

Related DT Changes

Direct regulating

Experiment method

TF-transporter regulations were collected from ChIP-Seq datasets.

Detailed Description

Transcription factor AP-2 gamma (TFAP2C) can directly bind to the SLC4A1 gene, which in turn affects the expression or function of the drug transporter Anion exchange protein 1.

TF Superclass 2: Zinc-coordinating DNA-binding domains

      Class 2.1: Nuclear receptors with C4 zinc fingers

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        ESR2 

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       Transcriptional Phenomenon 1

Direct binding to SLC4A1 gene [2]

TF Protein Name

Estrogen receptor beta Transcription Factor Info

Tissue

Bone

Related DT Changes

Direct regulating

Experiment method

TF-transporter regulations were collected from ChIP-Seq datasets.

Detailed Description

Estrogen receptor beta (ESR2) can directly bind to the SLC4A1 gene, which in turn affects the expression or function of the drug transporter Anion exchange protein 1.

        NR2F2 

Click to Show/Hide to Show 1 Transcriptional Phenomena      

       Transcriptional Phenomenon 1

Direct binding to SLC4A1 gene [3]

TF Protein Name

COUP transcription factor 2 Transcription Factor Info

Tissue

Bone marrow; Breast

Related DT Changes

Direct regulating

Experiment method

TF-transporter regulations were collected from ChIP-Seq datasets.

Detailed Description

COUP transcription factor 2 (NR2F2) can directly bind to the SLC4A1 gene, which in turn affects the expression or function of the drug transporter Anion exchange protein 1.

        NR2F6 

Click to Show/Hide to Show 1 Transcriptional Phenomena      

       Transcriptional Phenomenon 1

Activation of SLC4A1 gene in health condition [4]

TF Protein Name

Nuclear receptor subfamily 2 group F member 6 Transcription Factor Info

Studied Phenotype

Heallth [ICD11: N.A]

Tissue

Blood

Related DT Changes

Up regulating

Experimental Material

Chicken erythroblasts

Detailed Description

Nuclear receptor subfamily 2 group F member 6 (NR2F6) has been reported to activate the transcription of SLC4A1 gene in health condition, which leads to an increased expression of the drug transporter Anion exchange protein 1.

      Class 2.3: C2H2 zinc finger factors

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        KLF1 

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       Transcriptional Phenomenon 1

Activation of SLC4A1 gene in anemia condition [5]

TF Protein Name

Krueppel-like factor 1 Transcription Factor Info

Studied Phenotype

Anemia [ICD11: 3A9Z]

Tissue

Liver

Related DT Changes

Up regulating

Experimental Material

EKLF KO mice

Detailed Description

Krueppel-like factor 1 (KLF1) has been reported to activate the transcription of SLC4A1 gene in anemia condition, which leads to an increased expression of the drug transporter Anion exchange protein 1.

        MAZ 

Click to Show/Hide to Show 1 Transcriptional Phenomena      

       Transcriptional Phenomenon 1

Direct binding to SLC4A1 gene [2]

TF Protein Name

Myc-associated zinc finger protein Transcription Factor Info

Tissue

Bone marrow; Lung

Related DT Changes

Direct regulating

Experiment method

TF-transporter regulations were collected from ChIP-Seq datasets.

Detailed Description

Myc-associated zinc finger protein (MAZ) can directly bind to the SLC4A1 gene, which in turn affects the expression or function of the drug transporter Anion exchange protein 1.

        ZBTB7A 

Click to Show/Hide to Show 1 Transcriptional Phenomena      

       Transcriptional Phenomenon 1

Direct binding to SLC4A1 gene [2]

TF Protein Name

Zinc finger and BTB domain-containing protein 7A Transcription Factor Info

Tissue

Bone marrow

Related DT Changes

Direct regulating

Experiment method

TF-transporter regulations were collected from ChIP-Seq datasets.

Detailed Description

Zinc finger and BTB domain-containing protein 7A (ZBTB7A) can directly bind to the SLC4A1 gene, which in turn affects the expression or function of the drug transporter Anion exchange protein 1.

        ZNF263 

Click to Show/Hide to Show 1 Transcriptional Phenomena      

       Transcriptional Phenomenon 1

Direct binding to SLC4A1 gene [3]

TF Protein Name

Zinc finger protein 263 Transcription Factor Info

Tissue

Bone marrow; Kidney

Related DT Changes

Direct regulating

Experiment method

TF-transporter regulations were collected from ChIP-Seq datasets.

Detailed Description

Zinc finger protein 263 (ZNF263) can directly bind to the SLC4A1 gene, which in turn affects the expression or function of the drug transporter Anion exchange protein 1.

        ZNF384 

Click to Show/Hide to Show 1 Transcriptional Phenomena      

       Transcriptional Phenomenon 1

Direct binding to SLC4A1 gene [3]

TF Protein Name

Zinc finger protein 384 Transcription Factor Info

Tissue

Bone marrow

Related DT Changes

Direct regulating

Experiment method

TF-transporter regulations were collected from ChIP-Seq datasets.

Detailed Description

Zinc finger protein 384 (ZNF384) can directly bind to the SLC4A1 gene, which in turn affects the expression or function of the drug transporter Anion exchange protein 1.

TF Superclass 3: Helix-turn-helix domains

      Class 3.2: Paired box factors

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        PAX5 

Click to Show/Hide to Show 1 Transcriptional Phenomena      

       Transcriptional Phenomenon 1

Direct binding to SLC4A1 gene [6]

TF Protein Name

Paired box protein Pax-5 Transcription Factor Info

Tissue

Blood

Related DT Changes

Direct regulating

Experiment method

TF-transporter regulations were collected from ChIP-Seq datasets.

Detailed Description

Paired box protein Pax-5 (PAX5) can directly bind to the SLC4A1 gene, which in turn affects the expression or function of the drug transporter Anion exchange protein 1.

      Class 3.3: Fork head / winged helix factors

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        E2F6 

Click to Show/Hide to Show 1 Transcriptional Phenomena      

       Transcriptional Phenomenon 1

Direct binding to SLC4A1 gene [6]

TF Protein Name

Transcription factor E2F6 Transcription Factor Info

Tissue

Bone marrow

Related DT Changes

Direct regulating

Experiment method

TF-transporter regulations were collected from ChIP-Seq datasets.

Detailed Description

Transcription factor E2F6 (E2F6) can directly bind to the SLC4A1 gene, which in turn affects the expression or function of the drug transporter Anion exchange protein 1.

      Class 3.5: Tryptophan cluster factors

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        ELF1 

Click to Show/Hide to Show 1 Transcriptional Phenomena      

       Transcriptional Phenomenon 1

Direct binding to SLC4A1 gene [6]

TF Protein Name

ETS-related transcription factor Elf-1 Transcription Factor Info

Tissue

Bone marrow

Related DT Changes

Direct regulating

Experiment method

TF-transporter regulations were collected from ChIP-Seq datasets.

Detailed Description

ETS-related transcription factor Elf-1 (ELF1) can directly bind to the SLC4A1 gene, which in turn affects the expression or function of the drug transporter Anion exchange protein 1.

        FLI1 

Click to Show/Hide to Show 1 Transcriptional Phenomena      

       Transcriptional Phenomenon 1

Direct binding to SLC4A1 gene [6]

TF Protein Name

Friend leukemia integration 1 transcription factor Transcription Factor Info

Tissue

Blood; Mesenchymal; Vein

Related DT Changes

Direct regulating

Experiment method

TF-transporter regulations were collected from ChIP-Seq datasets.

Detailed Description

Friend leukemia integration 1 transcription factor (FLI1) can directly bind to the SLC4A1 gene, which in turn affects the expression or function of the drug transporter Anion exchange protein 1.

        GABPA 

Click to Show/Hide to Show 1 Transcriptional Phenomena      

       Transcriptional Phenomenon 1

Direct binding to SLC4A1 gene [6]

TF Protein Name

GA-binding protein alpha chain Transcription Factor Info

Tissue

Bone marrow

Related DT Changes

Direct regulating

Experiment method

TF-transporter regulations were collected from ChIP-Seq datasets.

Detailed Description

GA-binding protein alpha chain (GABPA) can directly bind to the SLC4A1 gene, which in turn affects the expression or function of the drug transporter Anion exchange protein 1.

        SPI1 

Click to Show/Hide to Show 1 Transcriptional Phenomena      

       Transcriptional Phenomenon 1

Direct binding to SLC4A1 gene [2]

TF Protein Name

Transcription factor PU.1 Transcription Factor Info

Tissue

Adrenal gland; Blood; Bone marrow; Embryo; Foreskin; Kidney; Lung; Muscle; Placenta; Renal cortex; Renal pelvis; Umbilical cord blood

Related DT Changes

Direct regulating

Experiment method

TF-transporter regulations were collected from ChIP-Seq datasets.

Detailed Description

Transcription factor PU.1 (SPI1) can directly bind to the SLC4A1 gene, which in turn affects the expression or function of the drug transporter Anion exchange protein 1.
References
1 hTFtarget: A Comprehensive Database for Regulations of Human Transcription Factors and Their Targets. Genomics Proteomics Bioinformatics. 2020 Apr;18(2):120-131. (ID:ENSG00000004939)
2 Closure of the NCBI SRA and implications for the long-term future of genomics data storage. Genome Biol. 2011;12(3):402.
3 The Encyclopedia of DNA elements (ENCODE): data portal update. Nucleic Acids Res. 2018 Jan 4;46(D1):D794-D801
4 v-erbA specifically suppresses transcription of the avian erythrocyte anion transporter (band 3) gene. Cell. 1988 Jan 15;52(1):107-19.
5 Major erythrocyte membrane protein genes in EKLF-deficient mice. Exp Hematol. 2006 Jun;34(6):705-12.
6 NCBI GEO: archive for functional genomics data sets--update. Nucleic Acids Res. 2013 Jan;41(D1):D991-5.

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