HCSGD entry for EDN1
1. General information
Official gene symbol | EDN1 |
---|---|
Entrez ID | 1906 |
Gene full name | endothelin 1 |
Other gene symbols | ET1 HDLCQ7 PPET1 |
Links to Entrez Gene | Links to Entrez Gene |
2. Neighbors in the network
This gene isn't in Literature mining network.
3. Gene ontology annotation
GO ID | GO term | Evidence | Category |
---|---|---|---|
GO:0000122 | Negative regulation of transcription from RNA polymerase II promoter | IDA | biological_process |
GO:0001516 | Prostaglandin biosynthetic process | IDA | biological_process |
GO:0001569 | Patterning of blood vessels | IEA | biological_process |
GO:0001666 | Response to hypoxia | IEA | biological_process |
GO:0001701 | In utero embryonic development | IEA | biological_process |
GO:0001821 | Histamine secretion | IEA | biological_process |
GO:0003100 | Regulation of systemic arterial blood pressure by endothelin | IDA | biological_process |
GO:0005125 | Cytokine activity | IDA | molecular_function |
GO:0005179 | Hormone activity | IDA | molecular_function |
GO:0005515 | Protein binding | IPI | molecular_function |
GO:0005576 | Extracellular region | TAS | cellular_component |
GO:0005615 | Extracellular space | IDA | cellular_component |
GO:0005737 | Cytoplasm | IDA | cellular_component |
GO:0006885 | Regulation of pH | IEA | biological_process |
GO:0007166 | Cell surface receptor signaling pathway | IDA | biological_process |
GO:0007186 | G-protein coupled receptor signaling pathway | IDA | biological_process |
GO:0007204 | Positive regulation of cytosolic calcium ion concentration | IDA | biological_process |
GO:0007205 | Protein kinase C-activating G-protein coupled receptor signaling pathway | IEA | biological_process |
GO:0007267 | Cell-cell signaling | IDA | biological_process |
GO:0007507 | Heart development | IEA | biological_process |
GO:0007585 | Respiratory gaseous exchange | IEA | biological_process |
GO:0007589 | Body fluid secretion | IEA | biological_process |
GO:0008284 | Positive regulation of cell proliferation | IDA | biological_process |
GO:0009953 | Dorsal/ventral pattern formation | IEA | biological_process |
GO:0010259 | Multicellular organismal aging | IEA | biological_process |
GO:0010460 | Positive regulation of heart rate | IDA | biological_process |
GO:0010595 | Positive regulation of endothelial cell migration | TAS | biological_process |
GO:0010613 | Positive regulation of cardiac muscle hypertrophy | IDA | biological_process |
GO:0010870 | Positive regulation of receptor biosynthetic process | IDA | biological_process |
GO:0014032 | Neural crest cell development | IEA | biological_process |
GO:0014065 | Phosphatidylinositol 3-kinase signaling | IDA | biological_process |
GO:0014824 | Artery smooth muscle contraction | IDA TAS | biological_process |
GO:0014826 | Vein smooth muscle contraction | IDA | biological_process |
GO:0015758 | Glucose transport | IEA | biological_process |
GO:0016049 | Cell growth | IEA | biological_process |
GO:0019229 | Regulation of vasoconstriction | IEA | biological_process |
GO:0019233 | Sensory perception of pain | IEA | biological_process |
GO:0019722 | Calcium-mediated signaling | IDA | biological_process |
GO:0030072 | Peptide hormone secretion | IDA | biological_process |
GO:0030185 | Nitric oxide transport | IDA | biological_process |
GO:0030195 | Negative regulation of blood coagulation | TAS | biological_process |
GO:0030335 | Positive regulation of cell migration | IDA | biological_process |
GO:0030593 | Neutrophil chemotaxis | IDA | biological_process |
GO:0030818 | Negative regulation of cAMP biosynthetic process | IEA | biological_process |
GO:0031583 | Phospholipase D-activating G-protein coupled receptor signaling pathway | IEA | biological_process |
GO:0031707 | Endothelin A receptor binding | IDA | molecular_function |
GO:0031708 | Endothelin B receptor binding | IDA | molecular_function |
GO:0032269 | Negative regulation of cellular protein metabolic process | IDA | biological_process |
GO:0032496 | Response to lipopolysaccharide | IEA | biological_process |
GO:0033574 | Response to testosterone | IEA | biological_process |
GO:0034392 | Negative regulation of smooth muscle cell apoptotic process | IEA | biological_process |
GO:0035094 | Response to nicotine | IEA | biological_process |
GO:0035810 | Positive regulation of urine volume | IEA | biological_process |
GO:0035815 | Positive regulation of renal sodium excretion | IEA | biological_process |
GO:0042045 | Epithelial fluid transport | IEA | biological_process |
GO:0042310 | Vasoconstriction | IDA | biological_process |
GO:0042313 | Protein kinase C deactivation | IDA | biological_process |
GO:0042474 | Middle ear morphogenesis | IEA | biological_process |
GO:0042482 | Positive regulation of odontogenesis | IEA | biological_process |
GO:0042554 | Superoxide anion generation | IEA | biological_process |
GO:0043179 | Rhythmic excitation | IEA | biological_process |
GO:0043200 | Response to amino acid | IEA | biological_process |
GO:0043406 | Positive regulation of MAP kinase activity | IDA | biological_process |
GO:0043507 | Positive regulation of JUN kinase activity | IDA | biological_process |
GO:0045321 | Leukocyte activation | TAS | biological_process |
GO:0045429 | Positive regulation of nitric oxide biosynthetic process | TAS | biological_process |
GO:0045793 | Positive regulation of cell size | IDA | biological_process |
GO:0045840 | Positive regulation of mitosis | IDA | biological_process |
GO:0045987 | Positive regulation of smooth muscle contraction | IEA | biological_process |
GO:0046887 | Positive regulation of hormone secretion | IDA | biological_process |
GO:0046888 | Negative regulation of hormone secretion | IEA | biological_process |
GO:0048016 | Inositol phosphate-mediated signaling | IDA | biological_process |
GO:0048661 | Positive regulation of smooth muscle cell proliferation | IDA | biological_process |
GO:0051216 | Cartilage development | IEA | biological_process |
GO:0051482 | Positive regulation of cytosolic calcium ion concentration involved in phospholipase C-activating G-protein coupled signaling pathway | IEA | biological_process |
GO:0051771 | Negative regulation of nitric-oxide synthase biosynthetic process | IDA | biological_process |
GO:0051899 | Membrane depolarization | IEA | biological_process |
GO:0051930 | Regulation of sensory perception of pain | IEA | biological_process |
GO:0060137 | Maternal process involved in parturition | IEA | biological_process |
GO:0060298 | Positive regulation of sarcomere organization | IMP | biological_process |
GO:0060585 | Positive regulation of prostaglandin-endoperoxide synthase activity | IMP | biological_process |
GO:0070101 | Positive regulation of chemokine-mediated signaling pathway | IC | biological_process |
GO:0071347 | Cellular response to interleukin-1 | IEA | biological_process |
GO:0071356 | Cellular response to tumor necrosis factor | IEA | biological_process |
GO:0090023 | Positive regulation of neutrophil chemotaxis | IEA | biological_process |
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4. Expression levels in datasets
- Meta-analysis result
p-value up | p-value down | FDR up | FDR down |
---|---|---|---|
0.0028954599 | 0.1323783595 | 0.1443304348 | 0.7009315631 |
- Individual experiment result
( "-" represent NA in the specific microarray platform )
( "-" represent NA in the specific microarray platform )
Data source | Up or down | Log fold change |
---|---|---|
GSE11954 | Down | -1.3118838401 |
GSE13712_SHEAR | Up | 0.5097074771 |
GSE13712_STATIC | Up | 0.0160723813 |
GSE19018 | Up | 0.1976719006 |
GSE19899_A1 | Up | 0.3112478745 |
GSE19899_A2 | Up | 2.5170985139 |
PubMed_21979375_A1 | Up | 2.2793786266 |
PubMed_21979375_A2 | Up | 2.4292813636 |
GSE35957 | Up | 2.0528211004 |
GSE36640 | Up | 1.7557554215 |
GSE54402 | Up | 1.3113165558 |
GSE9593 | Up | 0.0143654982 |
GSE43922 | Up | 0.4172828930 |
GSE24585 | Down | -0.4091109123 |
GSE37065 | Down | -0.1939613451 |
GSE28863_A1 | Down | -0.8988161624 |
GSE28863_A2 | Down | -0.2845442041 |
GSE28863_A3 | Down | -0.0455321512 |
GSE28863_A4 | Down | -0.2571291716 |
GSE48662 | Down | -0.0275458603 |
5. Regulation relationships with compounds/drugs/microRNAs
- Compounds
Not regulated by compounds
- Drugs
Name | Drug | Accession number |
---|---|---|
TBC-3711 | DB05407 | - |
- MicroRNAs
- mirTarBase
MiRNA_name | mirBase ID | miRTarBase ID | Experiment | Support type | References (Pubmed ID) |
---|---|---|---|---|---|
hsa-miR-155-5p | MIMAT0000646 | MIRT004455 | Luciferase reporter assay | Functional MTI | 19783678 |
hsa-miR-199a-5p | MIMAT0000231 | MIRT005432 | Luciferase reporter assay | Functional MTI | 19783678 |
hsa-miR-1 | MIMAT0000416 | MIRT006855 | Luciferase reporter assay | Functional MTI | 22963810 |
hsa-miR-1 | MIMAT0000416 | MIRT006855 | Microarray | Functional MTI (Weak) | 18668037 |
hsa-miR-124-3p | MIMAT0000422 | MIRT022267 | Microarray | Functional MTI (Weak) | 18668037 |
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- mirRecord
No target information from mirRecord
6. Text-mining results about the gene
Gene occurances in abstracts of cellular senescence-associated articles: 6 abstracts the gene occurs.
PubMed ID of the article | Sentenece the gene occurs |
---|---|
25239727 | ET-1 - the biologically predominant member of the endothelin peptide family - is an endothelial cell-derived peptide with a wide variety of developmental and physiological functions, which include embryogenesis, nociception, and natriuresis |
25239727 | In addition, ET-1 is a cytokine-like, multifunctional peptide with pro-inflammatory, mitogenic, and vasoconstrictor properties |
25239727 | If produced in excess amounts ET-1 promotes disease - mainly via activation of its ETA receptor |
25239727 | Because of its multiple disease-promoting functions ET-1 represents an ideal target MMM |
25239727 | Preclinical studies targeting either activity or production of ET-1 - utilizing ERAs, ARBs, or ACEIs, respectively - have demonstrated that partial regression of aging-associated changes in vasculature and kidney is possible |
25239727 | In this article I will review the molecular regulation of ET-1 and its role in the physiology of vascular homeostasis, aging, and cellular senescence |
25239727 | The clinical implications of activators of ET-1 overproduction, modalities for delaying or reversing aging-related cellular changes, as well as interventions to promote healthy aging and early disease prevention - particularly physical activity - are discussed |
22521293 | ETS-dependent p16INK4a and p21waf1/cip1 gene expression upon endothelin-1 stimulation in malignant versus and non-malignant proximal tubule cells |
22521293 | While in both conditions endothelin-1 is also upregulated, the signaling pathway connecting ET-1 to p16(INK4a) has not been characterized until this study |
22521293 | In contrast, primary proximal tubule cells showed a nuclear decrease after ET-1 stimulation |
16280018 | CONCLUSIONS: These findings suggest that IL-1alpha secretion increases as cells grow older, and the increased secretion of IL-1alpha by aged keratinocytes may stimulate HGF production in dermal fibroblasts paracrinely and ET-1 production in keratinocytes autocrinely, which stimulates melanocyte proliferation and induces an increase of tyrosinase activity in melanocytes |
12759390 | RESULTS: Both melanocyte cultures showed high rates of apoptosis, which were reduced when the cells were grown in the presence of keratinocyte feeder cells or human stem cell factor plus endothelin 1 |
11668329 | Interleukin-8 and endothelin-1 were demonstrated by means of the microarray to be differentially expressed more than twofold in VSMCs that were exposed to ApoJ |
8253603 | The results showed that the expression of ET-1 gene was also up-regulated when the culture became old |
8253603 | It is very interesting that the genes for quite different proteins of FN and ET-1 are both up-regulated during cellular aging |
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