HCSGD entry for CDK5
1. General information
Official gene symbol | CDK5 |
---|---|
Entrez ID | 1020 |
Gene full name | cyclin-dependent kinase 5 |
Other gene symbols | PSSALRE |
Links to Entrez Gene | Links to Entrez Gene |
2. Neighbors in the network
This gene isn't in PPI subnetwork.
3. Gene ontology annotation
GO ID | GO term | Evidence | Category |
---|---|---|---|
GO:0001764 | Neuron migration | TAS | biological_process |
GO:0001963 | Synaptic transmission, dopaminergic | IEA | biological_process |
GO:0002039 | P53 binding | IEA | molecular_function |
GO:0004672 | Protein kinase activity | TAS | molecular_function |
GO:0004674 | Protein serine/threonine kinase activity | IDA ISS TAS | molecular_function |
GO:0004693 | Cyclin-dependent protein serine/threonine kinase activity | ISS | molecular_function |
GO:0005176 | ErbB-2 class receptor binding | ISS | molecular_function |
GO:0005515 | Protein binding | IPI | molecular_function |
GO:0005524 | ATP binding | IEA | molecular_function |
GO:0005634 | Nucleus | ISS | cellular_component |
GO:0005737 | Cytoplasm | ISS | cellular_component |
GO:0005829 | Cytosol | TAS | cellular_component |
GO:0006886 | Intracellular protein transport | IEA | biological_process |
GO:0006913 | Nucleocytoplasmic transport | IEA | biological_process |
GO:0007160 | Cell-matrix adhesion | IEA | biological_process |
GO:0007268 | Synaptic transmission | TAS | biological_process |
GO:0007411 | Axon guidance | TAS | biological_process |
GO:0007416 | Synapse assembly | TAS | biological_process |
GO:0007519 | Skeletal muscle tissue development | IEA | biological_process |
GO:0007596 | Blood coagulation | TAS | biological_process |
GO:0008045 | Motor neuron axon guidance | IEA | biological_process |
GO:0008283 | Cell proliferation | TAS | biological_process |
GO:0008542 | Visual learning | IEA | biological_process |
GO:0009790 | Embryo development | ISS | biological_process |
GO:0010469 | Regulation of receptor activity | ISS | biological_process |
GO:0014044 | Schwann cell development | IEA | biological_process |
GO:0014069 | Postsynaptic density | ISS | cellular_component |
GO:0016020 | Membrane | ISS | cellular_component |
GO:0016079 | Synaptic vesicle exocytosis | TAS | biological_process |
GO:0016301 | Kinase activity | ISS | molecular_function |
GO:0016310 | Phosphorylation | IDA | biological_process |
GO:0016533 | Cyclin-dependent protein kinase 5 holoenzyme complex | IEA | cellular_component |
GO:0018105 | Peptidyl-serine phosphorylation | IDA | biological_process |
GO:0018107 | Peptidyl-threonine phosphorylation | IEA | biological_process |
GO:0019233 | Sensory perception of pain | IEA | biological_process |
GO:0021697 | Cerebellar cortex formation | IEA | biological_process |
GO:0021766 | Hippocampus development | IEA | biological_process |
GO:0021819 | Layer formation in cerebral cortex | IEA | biological_process |
GO:0021954 | Central nervous system neuron development | IEA | biological_process |
GO:0022038 | Corpus callosum development | IEA | biological_process |
GO:0030027 | Lamellipodium | IEA | cellular_component |
GO:0030054 | Cell junction | IEA | cellular_component |
GO:0030175 | Filopodium | IEA | cellular_component |
GO:0030182 | Neuron differentiation | ISS TAS | biological_process |
GO:0030334 | Regulation of cell migration | IEA | biological_process |
GO:0030424 | Axon | ISS | cellular_component |
GO:0030425 | Dendrite | ISS | cellular_component |
GO:0030426 | Growth cone | ISS | cellular_component |
GO:0030517 | Negative regulation of axon extension | IEA | biological_process |
GO:0030549 | Acetylcholine receptor activator activity | ISS | molecular_function |
GO:0030866 | Cortical actin cytoskeleton organization | IEA | biological_process |
GO:0031175 | Neuron projection development | ISS | biological_process |
GO:0031397 | Negative regulation of protein ubiquitination | IEA | biological_process |
GO:0031594 | Neuromuscular junction | ISS | cellular_component |
GO:0031914 | Negative regulation of synaptic plasticity | IEA | biological_process |
GO:0032092 | Positive regulation of protein binding | IEA | biological_process |
GO:0032801 | Receptor catabolic process | IEA | biological_process |
GO:0033136 | Serine phosphorylation of STAT3 protein | IEA | biological_process |
GO:0035249 | Synaptic transmission, glutamatergic | IEA | biological_process |
GO:0035418 | Protein localization to synapse | IEA | biological_process |
GO:0042981 | Regulation of apoptotic process | TAS | biological_process |
GO:0043025 | Neuronal cell body | ISS | cellular_component |
GO:0043113 | Receptor clustering | IEA | biological_process |
GO:0043125 | ErbB-3 class receptor binding | ISS | molecular_function |
GO:0043204 | Perikaryon | IEA | cellular_component |
GO:0043525 | Positive regulation of neuron apoptotic process | ISS | biological_process |
GO:0045055 | Regulated secretory pathway | IEA | biological_process |
GO:0045211 | Postsynaptic membrane | IEA | cellular_component |
GO:0045786 | Negative regulation of cell cycle | IEA | biological_process |
GO:0045860 | Positive regulation of protein kinase activity | IEA | biological_process |
GO:0045892 | Negative regulation of transcription, DNA-templated | IMP | biological_process |
GO:0045956 | Positive regulation of calcium ion-dependent exocytosis | IEA | biological_process |
GO:0046777 | Protein autophosphorylation | IEA | biological_process |
GO:0046826 | Negative regulation of protein export from nucleus | IEA | biological_process |
GO:0046875 | Ephrin receptor binding | IEA | molecular_function |
GO:0048148 | Behavioral response to cocaine | IEA | biological_process |
GO:0048167 | Regulation of synaptic plasticity | ISS TAS | biological_process |
GO:0048488 | Synaptic vesicle endocytosis | TAS | biological_process |
GO:0048675 | Axon extension | TAS | biological_process |
GO:0048709 | Oligodendrocyte differentiation | IDA | biological_process |
GO:0048813 | Dendrite morphogenesis | IEA | biological_process |
GO:0050321 | Tau-protein kinase activity | ISS | molecular_function |
GO:0051301 | Cell division | IEA | biological_process |
GO:0051402 | Neuron apoptotic process | TAS | biological_process |
GO:0060079 | Regulation of excitatory postsynaptic membrane potential | IEA | biological_process |
GO:0061001 | Regulation of dendritic spine morphogenesis | ISS | biological_process |
GO:0070509 | Calcium ion import | IEA | biological_process |
GO:0071156 | Regulation of cell cycle arrest | TAS | biological_process |
GO:0090314 | Positive regulation of protein targeting to membrane | IEA | biological_process |
GO:2000251 | Positive regulation of actin cytoskeleton reorganization | TAS | biological_process |
GO:2000273 | Positive regulation of receptor activity | ISS | biological_process |
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4. Expression levels in datasets
- Meta-analysis result
p-value up | p-value down | FDR up | FDR down |
---|---|---|---|
0.3124480795 | 0.0953337487 | 0.9999902473 | 0.5884802064 |
- 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 | 0.7283351266 |
GSE13712_SHEAR | Down | -0.4771596025 |
GSE13712_STATIC | Down | -0.4116114027 |
GSE19018 | Up | 0.2939463953 |
GSE19899_A1 | Down | -0.0083413569 |
GSE19899_A2 | Up | 0.2599720628 |
PubMed_21979375_A1 | Up | 0.5351868287 |
PubMed_21979375_A2 | Up | 0.3163020130 |
GSE35957 | Down | -0.3799625528 |
GSE36640 | Down | -0.0159030745 |
GSE54402 | Up | 0.1537566760 |
GSE9593 | Up | 0.2895925862 |
GSE43922 | Down | -0.0192404712 |
GSE24585 | Down | -0.1129166380 |
GSE37065 | Up | 0.3237688261 |
GSE28863_A1 | Down | -0.4809024480 |
GSE28863_A2 | Down | -0.3914730539 |
GSE28863_A3 | Down | -0.6125973228 |
GSE28863_A4 | Down | -0.1670332795 |
GSE48662 | Up | 0.0165327161 |
5. Regulation relationships with compounds/drugs/microRNAs
- Compounds
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- Drugs
Name | Drug | Accession number |
---|---|---|
Indirubin-3'-Monoxime | DB02052 | EXPT01949 |
Olomoucine | DB02116 | EXPT02433 |
Hymenialdisine | DB02950 | EXPT01757 |
SU9516 | DB03428 | EXPT02974 |
Flavopiridol | DB03496 | EXPT00998 |
Alsterpaullone | DB04014 | EXPT00590 |
6-PHENYL[5H]PYRROLO[2,3-B]PYRAZINE | DB07364 | - |
- MicroRNAs
- mirTarBase
- mirTarBase
MiRNA_name | mirBase ID | miRTarBase ID | Experiment | Support type | References (Pubmed ID) |
---|---|---|---|---|---|
hsa-miR-155-5p | MIMAT0000646 | MIRT020734 | Proteomics | Functional MTI (Weak) | 18668040 |
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- mirRecord
No target information from mirRecord
- mirRecord
6. Text-mining results about the gene
Gene occurances in abstracts of cellular senescence-associated articles: 7 abstracts the gene occurs.
PubMed ID of the article | Sentenece the gene occurs |
---|---|
23968571 | Loss-of-SIRT1 function during vascular ageing: hyperphosphorylation mediated by cyclin-dependent kinase 5 |
23968571 | A recent study suggests that cyclin-dependent kinase 5 (CDK5) is responsible for the phosphorylation of SIRT1 at the serine 47 residue |
23968571 | Thus, by inhibiting CDK5, SIRT1 function can be improved, in turn preventing the development of atherosclerosis and slowing down the process of vascular ageing |
22753194 | Cyclin-dependent kinase 5 (CDK5) was identified as an SIRT1 kinase modulating S47 phosphorylation |
22753194 | Knockdown or inhibition of CDK5 reduced the number of senescent endothelial cells, promoted nuclear exportation of SIRT1, and attenuated the expression of inflammatory genes in porcine aortic endothelial cells |
22753194 | Long-term treatment with roscovitine, a CDK5 inhibitor, blocked the development of cellular senescence and atherosclerosis in aortas of hypercholesterolemic apolipoprotein E-deficient mice |
20181942 | The induction of the senescent phenotype by pRB requires the postmitotic kinase CDK5, the best known function of which is in neuronal development and postmitotic neuronal activities |
20181942 | Activation of CDK5 in neurons depends on its activators p35 and p39; however, little is known about how CDK5 is activated in non-neuronal senescent cells |
20181942 | Here we report that p35 is required for the activation of CDK5 in the process of cellular senescence |
20181942 | We demonstrate that: (i) p35 is expressed in osteosarcoma cells, (ii) p35 is required for CDK5 activation induced by pRB during senescence, (iii) p35 is required for the senescent morphological changes in which CDK5 is known to be involved as well as for expression of the senescence secretome, and (iv) p35 is up-regulated in senescing cells |
20181942 | Taken together, these results suggest that p35 is at least one of the activators of CDK5 that is mobilized in the process of cellular senescence, which may provide insight into cancer cell proliferation and future cancer therapeutics |
16510591 | Phosphorylation of ezrin by cyclin-dependent kinase 5 induces the release of Rho GDP dissociation inhibitor to inhibit Rac1 activity in senescent cells |
16510591 | Here, we show that pRb-induced senescent SAOS-2 cells and senescent human diploid fibroblasts are accompanied by increased phosphorylation of ezrin at T235 by cyclin-dependent kinase 5 and consequent dissociation of Rho GDP dissociation inhibitor (Rho-GDI) from an ezrin/Rho-GDI complex |
15024070 | Cellular senescence requires CDK5 repression of Rac1 activity |
15024070 | We report here a role for CDK5 in induction of senescent cytoskeletal changes |
15024070 | CDK5 activation is upregulated in senescing cells |
15024070 | The increased activity of CDK5 further reduces GTPase Rac1 activity and Pak activation |
15024070 | The repression of the activity of the GTPase Rac1 by CDK5 is required for expression of the senescent phenotype |
15024070 | CDK5 regulation of Rac1 activity is necessary for actin polymerization accompanying senescent morphology in response to expression of pRb, activated Ras, or continuous passage |
15024070 | Inhibition of CDK5 attenuates SA-beta-Gal expression and blocks actin polymerization |
15024070 | These results point to a unique, nonneuronal role for CDK5 in regulation of Rac1 activity in senescence, illuminating the mechanisms underlying induction of senescence and the senescent shape change |
14504464 | Cdk5 activity increases in senescing cells and is required for expression of SA-beta-gal and for actin polymerization accompanying acquisition of the senescent morphology |
12769842 | Increased ezrin expression and activation by CDK5 coincident with acquisition of the senescent phenotype |
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