Detail Information of Transcriptional Regulations
General Information of Drug Transporter (DT) | |||||
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DT ID | DTD0102 Transporter Info | ||||
Gene Name | SLC16A11 | ||||
Transporter Name | Monocarboxylate transporter 11 | ||||
Gene ID | |||||
UniProt ID | |||||
Transcriptional Regulation of This DT (TSR) | ||||||
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Class1.1: Basic leucine zipper factors |
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ATF3 |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [1] | ||||
TF Protein Name |
Cyclic AMP-dependent transcription factor ATF-3 | Transcription Factor Info | ||||
Related DT Changes |
Direct regulating | |||||
Experiment method |
TF-transporter regulations were collected from ChIP-Seq datasets. | |||||
Detailed Description |
Cyclic AMP-dependent transcription factor ATF-3 (ATF3) can directly bind to the SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
CEBPB |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [2] | ||||
TF Protein Name |
CCAAT/enhancer-binding protein beta | Transcription Factor Info | ||||
Tissue |
Breast; Colon; Lung | |||||
Related DT Changes |
Direct regulating | |||||
Experiment method |
TF-transporter regulations were collected from ChIP-Seq datasets. | |||||
Detailed Description |
CCAAT/enhancer-binding protein beta (CEBPB) can directly bind to the SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
CREB1 |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [3] | ||||
TF Protein Name |
Cyclic AMP-responsive element-binding protein 1 | Transcription Factor Info | ||||
Tissue |
Blood; 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 SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
NFE2 |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [1] | ||||
TF Protein Name |
Transcription factor NF-E2 45 kDa subunit | Transcription Factor Info | ||||
Tissue |
Liver | |||||
Related DT Changes |
Direct regulating | |||||
Experiment method |
TF-transporter regulations were collected from ChIP-Seq datasets. | |||||
Detailed Description |
Transcription factor NF-E2 45 kDa subunit (NFE2) can directly bind to the SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
Class1.2: Basic helix-loop-helix factors |
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ASCL1 |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [4] | ||||
TF Protein Name |
Achaete-scute homolog 1 | Transcription Factor Info | ||||
Tissue |
Lung | |||||
Related DT Changes |
Direct regulating | |||||
Experiment method |
TF-transporter regulations were collected from ChIP-Seq datasets. | |||||
Detailed Description |
Achaete-scute homolog 1 (ASCL1) can directly bind to the SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
MAX |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [4] | ||||
TF Protein Name |
Protein max | Transcription Factor Info | ||||
Tissue |
Blood; Bone marrow; Brain; Breast; Embryo; Liver; Lung; Uterus; Vein | |||||
Related DT Changes |
Direct regulating | |||||
Experiment method |
TF-transporter regulations were collected from ChIP-Seq datasets. | |||||
Detailed Description |
Protein max (MAX) can directly bind to the SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
TCF21 |
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Transcriptional Phenomenon1 |
Binding to SLC16A11 gene in Coronary Artery Disease | [5] | ||||
TF Protein Name |
Transcription factor 21 | Transcription Factor Info | ||||
Studied Phenotype |
. | |||||
Related DT Changes |
Direct regulating | |||||
Detailed Description |
Transcription factor 21 (TCF21) has been reported to bind to the SLC16A11 gene in Coronary Artery Disease condition, which affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
TCF3 |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [2] | ||||
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 SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
Class2.1: Nuclear receptors with C4 zinc fingers |
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NR2F2 |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [1] | ||||
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 SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
PPARD |
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Transcriptional Phenomenon1 |
Repression of SLC16A11 gene in myofibroblasts condition | [6] | ||||
TF Protein Name |
Peroxisome proliferator-activated receptor delta | Transcription Factor Info | ||||
Studied Phenotype |
. | |||||
Related DT Changes |
Down regulating | |||||
Detailed Description |
Peroxisome proliferator-activated receptor delta (PPARD) has been reported to repress the transcription of SLC16A11 gene in myofibroblasts condition, which leads to a decreased expression of the drug transporter Monocarboxylate transporter 11. | |||||
Class2.2: Other C4 zinc finger-type factors |
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GATA4 |
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Transcriptional Phenomenon1 |
Activation of SLC16A11 gene in gastric cancer condition | [7] | ||||
TF Protein Name |
Transcription factor GATA-4 | Transcription Factor Info | ||||
Affected Drug/Substrate |
Metformin | |||||
Studied Phenotype |
. | |||||
Related DT Changes |
Up regulating | |||||
Detailed Description |
Transcription factor GATA-4 (GATA4) has been reported to activate the transcription of SLC16A11 gene in gastric cancer condition, which leads to an increased expression of the drug transporter Monocarboxylate transporter 11. | |||||
Class2.3: C2H2 zinc finger factors |
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CTCF |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [3] | ||||
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 SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
KLF4 |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [4] | ||||
TF Protein Name |
Krueppel-like factor 4 | Transcription Factor Info | ||||
Tissue |
Foreskin; Pancreatic ductal | |||||
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 SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
KLF5 |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [3] | ||||
TF Protein Name |
Krueppel-like factor 5 | Transcription Factor Info | ||||
Tissue |
Embryo; Pancreatic ductal; Stomach | |||||
Related DT Changes |
Direct regulating | |||||
Experiment method |
TF-transporter regulations were collected from ChIP-Seq datasets. | |||||
Detailed Description |
Krueppel-like factor 5 (KLF5) can directly bind to the SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
KLF9 |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [4] | ||||
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 SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
MAZ |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [1] | ||||
TF Protein Name |
Myc-associated zinc finger protein | Transcription Factor Info | ||||
Tissue |
Blood; 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 SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
ZBTB7A |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [2] | ||||
TF Protein Name |
Zinc finger and BTB domain-containing protein 7A | Transcription Factor Info | ||||
Tissue |
Uterus | |||||
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 SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
ZNF263 |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [2] | ||||
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 SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
ZNF384 |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 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 SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
Class3.1: Homeo domain factors |
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HNF1B |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [1] | ||||
TF Protein Name |
Hepatocyte nuclear factor 1-beta | Transcription Factor Info | ||||
Tissue |
Embryo; Pancreatic ductal | |||||
Related DT Changes |
Direct regulating | |||||
Experiment method |
TF-transporter regulations were collected from ChIP-Seq datasets. | |||||
Detailed Description |
Hepatocyte nuclear factor 1-beta (HNF1B) can directly bind to the SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
ZEB1 |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [2] | ||||
TF Protein Name |
Zinc finger E-box-binding homeobox 1 | Transcription Factor Info | ||||
Tissue |
Blood | |||||
Related DT Changes |
Direct regulating | |||||
Experiment method |
TF-transporter regulations were collected from ChIP-Seq datasets. | |||||
Detailed Description |
Zinc finger E-box-binding homeobox 1 (ZEB1) can directly bind to the SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
Class3.2: Paired box factors |
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PAX5 |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [3] | ||||
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 SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
Class3.3: Fork head / winged helix factors |
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E2F6 |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [3] | ||||
TF Protein Name |
Transcription factor E2F6 | Transcription Factor Info | ||||
Tissue |
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 SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
Class3.5: Tryptophan cluster factors |
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ERG |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [4] | ||||
TF Protein Name |
Transcriptional regulator ERG | Transcription Factor Info | ||||
Tissue |
Aorta | |||||
Related DT Changes |
Direct regulating | |||||
Experiment method |
TF-transporter regulations were collected from ChIP-Seq datasets. | |||||
Detailed Description |
Transcriptional regulator ERG (ERG) can directly bind to the SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
FLI1 |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [4] | ||||
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 SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
GABPA |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [1] | ||||
TF Protein Name |
GA-binding protein alpha chain | Transcription Factor Info | ||||
Tissue |
Liver | |||||
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 SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
SPI1 |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [4] | ||||
TF Protein Name |
Transcription factor PU.1 | Transcription Factor Info | ||||
Tissue |
Adrenal gland; Blood; 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 SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
Class3.7: ARID domain factors |
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ARID3A |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [3] | ||||
TF Protein Name |
AT-rich interactive domain-containing protein 3A | Transcription Factor Info | ||||
Tissue |
Liver | |||||
Related DT Changes |
Direct regulating | |||||
Experiment method |
TF-transporter regulations were collected from ChIP-Seq datasets. | |||||
Detailed Description |
AT-rich interactive domain-containing protein 3A (ARID3A) can directly bind to the SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
KDM5B |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [2] | ||||
TF Protein Name |
Lysine-specific demethylase 5B | Transcription Factor Info | ||||
Tissue |
Breast | |||||
Related DT Changes |
Direct regulating | |||||
Experiment method |
TF-transporter regulations were collected from ChIP-Seq datasets. | |||||
Detailed Description |
Lysine-specific demethylase 5B (KDM5B) can directly bind to the SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
Class6.1: Rel homology region factors |
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EBF1 |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [1] | ||||
TF Protein Name |
Transcription factor COE1 | 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 COE1 (EBF1) can directly bind to the SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
Class6.4: Runt domain factors |
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RUNX3 |
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Transcriptional Phenomenon1 |
Direct binding to SLC16A11 gene | [2] | ||||
TF Protein Name |
Runt-related transcription factor 3 | Transcription Factor Info | ||||
Tissue |
Blood | |||||
Related DT Changes |
Direct regulating | |||||
Experiment method |
TF-transporter regulations were collected from ChIP-Seq datasets. | |||||
Detailed Description |
Runt-related transcription factor 3 (RUNX3) can directly bind to the SLC16A11 gene, which in turn affects the expression or function of the drug transporter Monocarboxylate transporter 11. | |||||
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