Detail Information of Transcriptional Regulations
General Information of Drug Transporter (DT) | |||||
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DT ID | DTD0511 Transporter Info | ||||
Gene Name | KCNJ11 | ||||
Transporter Name | ATP-sensitive inward rectifier potassium channel 11 | ||||
Gene ID | |||||
UniProt ID | |||||
Transcriptional Regulation of This DT (TSR) | ||||||
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Class 1.1: Basic leucine zipper factors |
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CREB1 |
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Transcriptional Phenomenon 1 |
Direct binding to KCNJ11 gene | [1] | ||||
TF Protein Name |
Cyclic AMP-responsive element-binding protein 1 | Transcription Factor Info | ||||
Tissue |
Liver | |||||
Related DT Changes |
Direct regulating | |||||
Experiment method |
TF-transporter regulations were collected from ChIP-Seq datasets. | |||||
Detailed Description |
Cyclic AMP-responsive element-binding protein 1 (CREB1) can directly bind to the KCNJ11 gene, which in turn affects the expression or function of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
Class 1.2: Basic helix-loop-helix factors |
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TCF12 |
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Transcriptional Phenomenon 1 |
Direct binding to KCNJ11 gene | [2] | ||||
TF Protein Name |
Transcription factor 12 | 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 12 (TCF12) can directly bind to the KCNJ11 gene, which in turn affects the expression or function of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
TCF3 |
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Transcriptional Phenomenon 1 |
Direct binding to KCNJ11 gene | [3] | ||||
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 KCNJ11 gene, which in turn affects the expression or function of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
TFAP4 |
Click to Show/Hide to Show 1 Transcriptional Phenomena |
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Transcriptional Phenomenon 1 |
Direct binding to KCNJ11 gene | [4] | ||||
TF Protein Name |
Transcription factor AP-4 | 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 AP-4 (TFAP4) can directly bind to the KCNJ11 gene, which in turn affects the expression or function of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
Class 1.3: Basic helix-span-helix factors |
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TFAP2C |
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Transcriptional Phenomenon 1 |
Direct binding to KCNJ11 gene | [4] | ||||
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 KCNJ11 gene, which in turn affects the expression or function of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
Class 2.1: Nuclear receptors with C4 zinc fingers |
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mutated HNF4A (rs1884613) |
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Transcriptional Phenomenon 1 |
Direct binding to KCNJ11 gene in type 2 diabetes condition | [5] | ||||
TF Protein Name |
Hepatocyte nuclear factor 4-alpha | Transcription Factor Info | ||||
Studied Phenotype |
Type 2 diabetes [ICD11: 5A11] | |||||
Tissue |
Blood | |||||
Related DT Changes |
Direct regulating | |||||
Experiment method |
TF-transporter regulations were collected from ChIP-Seq datasets. | |||||
Experimental Material |
human Type 2 diabetes blood isolates | |||||
Detailed Description |
mutated Hepatocyte nuclear factor 4-alpha (mutated HNF4A (rs1884613)) can directly bind to the KCNJ11 gene, which in turn affects the expression or function of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
mutated HNF4A (rs2144908) |
Click to Show/Hide to Show 1 Transcriptional Phenomena |
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Transcriptional Phenomenon 1 |
Direct binding to KCNJ11 gene in type 2 diabetes condition | [5] | ||||
TF Protein Name |
Hepatocyte nuclear factor 4-alpha | Transcription Factor Info | ||||
Studied Phenotype |
Type 2 diabetes [ICD11: 5A11] | |||||
Tissue |
Blood | |||||
Related DT Changes |
Direct regulating | |||||
Experiment method |
TF-transporter regulations were collected from ChIP-Seq datasets. | |||||
Experimental Material |
human Type 2 diabetes blood isolates | |||||
Detailed Description |
mutated Hepatocyte nuclear factor 4-alpha (mutated HNF4A (rs2144908)) can directly bind to the KCNJ11 gene, which in turn affects the expression or function of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
mutated HNF4A (rs4810424) |
Click to Show/Hide to Show 1 Transcriptional Phenomena |
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Transcriptional Phenomenon 1 |
Direct binding to KCNJ11 gene in type 2 diabetes condition | [5] | ||||
TF Protein Name |
Hepatocyte nuclear factor 4-alpha | Transcription Factor Info | ||||
Studied Phenotype |
Type 2 diabetes [ICD11: 5A11] | |||||
Tissue |
Blood | |||||
Related DT Changes |
Direct regulating | |||||
Experiment method |
TF-transporter regulations were collected from ChIP-Seq datasets. | |||||
Experimental Material |
human Type 2 diabetes blood isolates | |||||
Detailed Description |
mutated Hepatocyte nuclear factor 4-alpha (mutated HNF4A (rs4810424)) can directly bind to the KCNJ11 gene, which in turn affects the expression or function of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
NR2F2 |
Click to Show/Hide to Show 1 Transcriptional Phenomena |
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Transcriptional Phenomenon 1 |
Direct binding to KCNJ11 gene | [2] | ||||
TF Protein Name |
COUP transcription factor 2 | Transcription Factor Info | ||||
Tissue |
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 KCNJ11 gene, which in turn affects the expression or function of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
RARG |
Click to Show/Hide to Show 1 Transcriptional Phenomena |
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Transcriptional Phenomenon 1 |
Direct binding to KCNJ11 gene | [4] | ||||
TF Protein Name |
Retinoic acid receptor gamma | Transcription Factor Info | ||||
Tissue |
Breast | |||||
Related DT Changes |
Direct regulating | |||||
Experiment method |
TF-transporter regulations were collected from ChIP-Seq datasets. | |||||
Detailed Description |
Retinoic acid receptor gamma (RARG) can directly bind to the KCNJ11 gene, which in turn affects the expression or function of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
Class 2.2: Other C4 zinc finger-type factors |
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GATA1 |
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Transcriptional Phenomenon 1 |
Direct binding to KCNJ11 gene | [1] | ||||
TF Protein Name |
Erythroid transcription factor | Transcription Factor Info | ||||
Tissue |
Bone marrow | |||||
Related DT Changes |
Direct regulating | |||||
Experiment method |
TF-transporter regulations were collected from ChIP-Seq datasets. | |||||
Detailed Description |
Erythroid transcription factor (GATA1) can directly bind to the KCNJ11 gene, which in turn affects the expression or function of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
Class 2.3: C2H2 zinc finger factors |
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CTCF |
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Transcriptional Phenomenon 1 |
Direct binding to KCNJ11 gene | [4] | ||||
TF Protein Name |
Transcriptional repressor CTCF | Transcription Factor Info | ||||
Tissue |
Brain | |||||
Related DT Changes |
Direct regulating | |||||
Experiment method |
TF-transporter regulations were collected from ChIP-Seq datasets. | |||||
Detailed Description |
Transcriptional repressor CTCF (CTCF) can directly bind to the KCNJ11 gene, which in turn affects the expression or function of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
KLF4 |
Click to Show/Hide to Show 1 Transcriptional Phenomena |
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Transcriptional Phenomenon 1 |
Direct binding to KCNJ11 gene | [2] | ||||
TF Protein Name |
Krueppel-like factor 4 | Transcription Factor Info | ||||
Tissue |
Foreskin | |||||
Related DT Changes |
Direct regulating | |||||
Experiment method |
TF-transporter regulations were collected from ChIP-Seq datasets. | |||||
Detailed Description |
Krueppel-like factor 4 (KLF4) can directly bind to the KCNJ11 gene, which in turn affects the expression or function of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
KLF9 |
Click to Show/Hide to Show 1 Transcriptional Phenomena |
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Transcriptional Phenomenon 1 |
Direct binding to KCNJ11 gene | [1] | ||||
TF Protein Name |
Krueppel-like factor 9 | Transcription Factor Info | ||||
Related DT Changes |
Direct regulating | |||||
Experiment method |
TF-transporter regulations were collected from ChIP-Seq datasets. | |||||
Detailed Description |
Krueppel-like factor 9 (KLF9) can directly bind to the KCNJ11 gene, which in turn affects the expression or function of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
MAZ |
Click to Show/Hide to Show 1 Transcriptional Phenomena |
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Transcriptional Phenomenon 1 |
Direct binding to KCNJ11 gene | [3] | ||||
TF Protein Name |
Myc-associated zinc finger protein | Transcription Factor Info | ||||
Tissue |
Blood; Bone marrow; Cervix; Liver; 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 KCNJ11 gene, which in turn affects the expression or function of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
ZNF263 |
Click to Show/Hide to Show 1 Transcriptional Phenomena |
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Transcriptional Phenomenon 1 |
Direct binding to KCNJ11 gene | [3] | ||||
TF Protein Name |
Zinc finger protein 263 | Transcription Factor Info | ||||
Tissue |
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 KCNJ11 gene, which in turn affects the expression or function of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
ZNF384 |
Click to Show/Hide to Show 1 Transcriptional Phenomena |
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Transcriptional Phenomenon 1 |
Direct binding to KCNJ11 gene | [4] | ||||
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 KCNJ11 gene, which in turn affects the expression or function of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
Class 3.1: Homeo domain factors |
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ISL1 |
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Transcriptional Phenomenon 1 |
Activation of KCNJ11 gene in health condition | [6] | ||||
TF Protein Name |
Insulin gene enhancer protein ISL-1 | Transcription Factor Info | ||||
Studied Phenotype |
Heallth [ICD11: N.A] | |||||
Tissue |
Small intestine | |||||
Related DT Changes |
Up regulating | |||||
Experimental Material |
Rat small intestine epithelial cells (IEC-6) | |||||
Detailed Description |
Insulin gene enhancer protein ISL-1 (ISL1) has been reported to activate the transcription of KCNJ11 gene in health condition, which leads to an increased expression of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
PDX1 |
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Transcriptional Phenomenon 1 |
Activation of KCNJ11 gene in health condition | [7] | ||||
TF Protein Name |
Pancreas/duodenum homeobox protein 1 | Transcription Factor Info | ||||
Studied Phenotype |
Heallth [ICD11: N.A] | |||||
Tissue |
Embryo | |||||
Related DT Changes |
Up regulating | |||||
Experimental Material |
Mouse embryo embryonic stem cells (EB3) | |||||
Detailed Description |
Pancreas/duodenum homeobox protein 1 (PDX1) has been reported to activate the transcription of KCNJ11 gene in health condition, which leads to an increased expression of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
Class 3.3: Fork head / winged helix factors |
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E2F1 |
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Transcriptional Phenomenon 1 |
Activation of KCNJ11 gene in health condition | [8] | ||||
TF Protein Name |
Transcription factor E2F1 | Transcription Factor Info | ||||
Studied Phenotype |
Heallth [ICD11: N.A] | |||||
Tissue |
Pancreas | |||||
Related DT Changes |
Up regulating | |||||
Experimental Material |
C57BL/6J mice | |||||
Detailed Description |
Transcription factor E2F1 (E2F1) has been reported to activate the transcription of KCNJ11 gene in health condition, which leads to an increased expression of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
Transcriptional Phenomenon 2 |
Direct binding to KCNJ11 gene | [1] | ||||
TF Protein Name |
Transcription factor E2F1 | Transcription Factor Info | ||||
Tissue |
Blood; Breast; Cervix | |||||
Related DT Changes |
Direct regulating | |||||
Experiment method |
TF-transporter regulations were collected from ChIP-Seq datasets. | |||||
Detailed Description |
Transcription factor E2F1 (E2F1) can directly bind to the KCNJ11 gene, which in turn affects the expression or function of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
E2F6 |
Click to Show/Hide to Show 1 Transcriptional Phenomena |
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Transcriptional Phenomenon 1 |
Direct binding to KCNJ11 gene | [2] | ||||
TF Protein Name |
Transcription factor E2F6 | Transcription Factor Info | ||||
Tissue |
Bone marrow; Embryo | |||||
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 KCNJ11 gene, which in turn affects the expression or function of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
FOXA1 |
Click to Show/Hide to Show 1 Transcriptional Phenomena |
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Transcriptional Phenomenon 1 |
Direct binding to KCNJ11 gene | [3] | ||||
TF Protein Name |
Hepatocyte nuclear factor 3-alpha | Transcription Factor Info | ||||
Tissue |
Breast; Embryo; Lung; Prostate | |||||
Related DT Changes |
Direct regulating | |||||
Experiment method |
TF-transporter regulations were collected from ChIP-Seq datasets. | |||||
Detailed Description |
Hepatocyte nuclear factor 3-alpha (FOXA1) can directly bind to the KCNJ11 gene, which in turn affects the expression or function of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
FOXP1 |
Click to Show/Hide to Show 1 Transcriptional Phenomena |
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Transcriptional Phenomenon 1 |
Direct binding to KCNJ11 gene | [4] | ||||
TF Protein Name |
Forkhead box protein P1 | Transcription Factor Info | ||||
Tissue |
Embryo | |||||
Related DT Changes |
Direct regulating | |||||
Experiment method |
TF-transporter regulations were collected from ChIP-Seq datasets. | |||||
Detailed Description |
Forkhead box protein P1 (FOXP1) can directly bind to the KCNJ11 gene, which in turn affects the expression or function of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
Class 3.5: Tryptophan cluster factors |
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GABPA |
Click to Show/Hide to Show 1 Transcriptional Phenomena |
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Transcriptional Phenomenon 1 |
Direct binding to KCNJ11 gene | [1] | ||||
TF Protein Name |
GA-binding protein alpha chain | Transcription Factor Info | ||||
Tissue |
Bone marrow; Liver; Prostate | |||||
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 KCNJ11 gene, which in turn affects the expression or function of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
SPI1 |
Click to Show/Hide to Show 1 Transcriptional Phenomena |
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Transcriptional Phenomenon 1 |
Direct binding to KCNJ11 gene | [2] | ||||
TF Protein Name |
Transcription factor PU.1 | Transcription Factor Info | ||||
Tissue |
Adrenal gland; Bone marrow; Brain; Breast; Embryo; Foreskin; Heart; Intestine; Kidney; Lung; Muscle; Penis; Placenta; Renal cortex; Renal pelvis; Skin; Spinal cord; Stomach; Testes; 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 KCNJ11 gene, which in turn affects the expression or function of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
Class 6.7: Grainyhead domain factors |
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GRHL3 |
Click to Show/Hide to Show 1 Transcriptional Phenomena |
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Transcriptional Phenomenon 1 |
Direct binding to KCNJ11 gene | [3] | ||||
TF Protein Name |
Grainyhead-like protein 3 homolog | Transcription Factor Info | ||||
Tissue |
Skin | |||||
Related DT Changes |
Direct regulating | |||||
Experiment method |
TF-transporter regulations were collected from ChIP-Seq datasets. | |||||
Detailed Description |
Grainyhead-like protein 3 homolog (GRHL3) can directly bind to the KCNJ11 gene, which in turn affects the expression or function of the drug transporter ATP-sensitive inward rectifier potassium channel 11. | |||||
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