HCSGD entry for STAT5A
1. General information
Official gene symbol | STAT5A |
---|---|
Entrez ID | 6776 |
Gene full name | signal transducer and activator of transcription 5A |
Other gene symbols | MGF STAT5 |
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:0000255 | Allantoin metabolic process | ISS | biological_process |
GO:0000979 | RNA polymerase II core promoter sequence-specific DNA binding | IEA | molecular_function |
GO:0001553 | Luteinization | IEA | biological_process |
GO:0001779 | Natural killer cell differentiation | IEA | biological_process |
GO:0003677 | DNA binding | IEA | molecular_function |
GO:0003700 | Sequence-specific DNA binding transcription factor activity | IEA | molecular_function |
GO:0004871 | Signal transducer activity | IEA | molecular_function |
GO:0005509 | Calcium ion binding | IEA | molecular_function |
GO:0005515 | Protein binding | IPI | molecular_function |
GO:0005634 | Nucleus | IDA IEA | cellular_component |
GO:0005654 | Nucleoplasm | TAS | cellular_component |
GO:0005730 | Nucleolus | IDA | cellular_component |
GO:0005737 | Cytoplasm | IDA IEA | cellular_component |
GO:0005829 | Cytosol | TAS | cellular_component |
GO:0006101 | Citrate metabolic process | ISS | biological_process |
GO:0006103 | 2-oxoglutarate metabolic process | ISS | biological_process |
GO:0006105 | Succinate metabolic process | ISS | biological_process |
GO:0006107 | Oxaloacetate metabolic process | ISS | biological_process |
GO:0006351 | Transcription, DNA-templated | IEA | biological_process |
GO:0006357 | Regulation of transcription from RNA polymerase II promoter | TAS | biological_process |
GO:0006549 | Isoleucine metabolic process | ISS | biological_process |
GO:0006573 | Valine metabolic process | ISS | biological_process |
GO:0006600 | Creatine metabolic process | ISS | biological_process |
GO:0006631 | Fatty acid metabolic process | ISS | biological_process |
GO:0007259 | JAK-STAT cascade | IEA TAS | biological_process |
GO:0007565 | Female pregnancy | IEA | biological_process |
GO:0007595 | Lactation | IEA | biological_process |
GO:0018108 | Peptidyl-tyrosine phosphorylation | IEA | biological_process |
GO:0019218 | Regulation of steroid metabolic process | IEA | biological_process |
GO:0019221 | Cytokine-mediated signaling pathway | IEA | biological_process |
GO:0019530 | Taurine metabolic process | ISS | biological_process |
GO:0019915 | Lipid storage | IEA | biological_process |
GO:0030155 | Regulation of cell adhesion | IEA | biological_process |
GO:0030856 | Regulation of epithelial cell differentiation | IEA | biological_process |
GO:0032825 | Positive regulation of natural killer cell differentiation | IEA | biological_process |
GO:0033026 | Negative regulation of mast cell apoptotic process | IEA | biological_process |
GO:0033077 | T cell differentiation in thymus | IEA | biological_process |
GO:0038161 | Prolactin signaling pathway | ISS | biological_process |
GO:0040014 | Regulation of multicellular organism growth | ISS | biological_process |
GO:0040018 | Positive regulation of multicellular organism growth | IEA | biological_process |
GO:0042104 | Positive regulation of activated T cell proliferation | IEA | biological_process |
GO:0043029 | T cell homeostasis | IEA | biological_process |
GO:0043434 | Response to peptide hormone | IEA | biological_process |
GO:0045086 | Positive regulation of interleukin-2 biosynthetic process | IEA | biological_process |
GO:0045579 | Positive regulation of B cell differentiation | IEA | biological_process |
GO:0045588 | Positive regulation of gamma-delta T cell differentiation | IEA | biological_process |
GO:0045647 | Negative regulation of erythrocyte differentiation | IEA | biological_process |
GO:0045931 | Positive regulation of mitotic cell cycle | IEA | biological_process |
GO:0045944 | Positive regulation of transcription from RNA polymerase II promoter | IEA | biological_process |
GO:0045954 | Positive regulation of natural killer cell mediated cytotoxicity | IEA | biological_process |
GO:0046449 | Creatinine metabolic process | ISS | biological_process |
GO:0046543 | Development of secondary female sexual characteristics | IEA | biological_process |
GO:0046544 | Development of secondary male sexual characteristics | IEA | biological_process |
GO:0048541 | Peyer's patch development | IEA | biological_process |
GO:0050729 | Positive regulation of inflammatory response | IEA | biological_process |
GO:0060376 | Positive regulation of mast cell differentiation | IEA | biological_process |
GO:0060397 | JAK-STAT cascade involved in growth hormone signaling pathway | TAS | biological_process |
GO:0060740 | Prostate gland epithelium morphogenesis | IEA | biological_process |
GO:0060742 | Epithelial cell differentiation involved in prostate gland development | IEA | biological_process |
GO:0061180 | Mammary gland epithelium development | IEA | biological_process |
GO:0070668 | Positive regulation of mast cell proliferation | 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 |
---|---|---|---|
0.4038096729 | 0.1897666920 | 0.9999902473 | 0.8444708925 |
- 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 | Up | 0.0136871118 |
GSE13712_SHEAR | Down | -0.2726168774 |
GSE13712_STATIC | Down | -0.1564876362 |
GSE19018 | Up | 0.1151667088 |
GSE19899_A1 | Up | 0.1712554966 |
GSE19899_A2 | Down | -0.0344484164 |
PubMed_21979375_A1 | Down | -0.6658286907 |
PubMed_21979375_A2 | Up | 0.1007152536 |
GSE35957 | Up | 0.0616436167 |
GSE36640 | Down | -0.8851220602 |
GSE54402 | Down | -1.0794753440 |
GSE9593 | Down | -0.0225915774 |
GSE43922 | Down | -0.0812365400 |
GSE24585 | Up | 0.2093465055 |
GSE37065 | Up | 0.0706766373 |
GSE28863_A1 | Up | 0.7672401393 |
GSE28863_A2 | Up | 0.3488636502 |
GSE28863_A3 | Up | 0.1993397151 |
GSE28863_A4 | Down | -0.0749680316 |
GSE48662 | Down | -0.0628032640 |
5. Regulation relationships with compounds/drugs/microRNAs
- Compounds
Not regulated by compounds
- Drugs
Not regulated by drugs
- MicroRNAs
- mirTarBase
MiRNA_name | mirBase ID | miRTarBase ID | Experiment | Support type | References (Pubmed ID) |
---|---|---|---|---|---|
hsa-miR-222-3p | MIMAT0000279 | MIRT000018 | qRT-PCR//Luciferase reporter assay//Western blot | Functional MTI | 20489169 |
hsa-miR-124-3p | MIMAT0000422 | MIRT023082 | Microarray | Functional MTI (Weak) | 18668037 |
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- mirRecord
MicroRNA name | mirBase ID | Target site number | MiRNA mature ID | Test method inter | MiRNA regulation site | Reporter target site | Pubmed ID |
---|---|---|---|---|---|---|---|
hsa-miR-222-3p | MIMAT0000279 | 1 | hsa-miR-222 | {Western blot} | {overexpression by miRNA precursor transfection} | 20489169 |
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6. Text-mining results about the gene
Gene occurances in abstracts of cellular senescence-associated articles: 3 abstracts the gene occurs.
PubMed ID of the article | Sentenece the gene occurs |
---|---|
22926520 | However, upon ectopic expression of BCR-ABL p210 in non-myeloid cells, co-transfected STAT5A is phosphorylated on Y694 and localized in the nucleus arguing for an additional factor mediating cytoplasmic retention in CML cells |
22926520 | Expression of the SFK v-Src, Hck or Lyn together with STAT5A results in phosphorylation on Y694 and cytoplasmic retention |
22926520 | Cytoplasmic retention depends on the kinase activity of SFK and is mediated through the interaction of the SH2 domain of STAT5A with the SFK |
22926520 | Interestingly, nuclear accumulation of STAT5A as a result of activation by FLT3-ITD, an oncogene found in acute myeloid leukemia, cannot be prevented by coexpression of SFK |
22532803 | Epigenome-wide association scans (EWAS) identified age-related phenotype DMRs (ap-DMRs) associated with LDL (STAT5A), lung function (WT1), and maternal longevity (ARL4A, TBX20) |
17913706 | We found that constitutively active STAT5A (ca-STAT5A) can induce a p53- and Rb-dependent cellular senescence response |
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