PTK2 — Protein tyrosine kinase 2
PTK2 belongs to a gene co-expression module in 4 of 28 SCUBA cell types. Each module groups genes that rise and fall together in that cell type; the genes it shares a module with are its closest co-expression partners there.
PTK2's module in each cell type
| Cell type | Module | Shares the module with | |
|---|---|---|---|
| Endothelial | Endothelial Junction Identity Endothelial cell development | ADGRF5, AKAP13, CDH5, CXCL12, DENND5A, FGF12, FURIN, HSPA12B +13 more | View in SCUBA |
| Enterocytes | Focal adhesion actin Migration & adhesion | BAZ2B, CARMIL1, COP1, FRYL, KIF13A, LPP, MYO6, PALLD +4 more | View in SCUBA |
| Lymphatic endothelial | Focal Adhesion Migration migration & adhesion | BIRC6, CDC42BPA, DOCK1, EIF4G3, GNAQ, LPP, NF1, PAM +2 more | View in SCUBA |
| Smooth muscle cells | Arteriolar Mural Cells Development | ESAM, FOXS1, GJA4, LINGO1, NDUFA4L2, NGF, OR51E1, OR51E2 +3 more | View in SCUBA |
About the gene
| Synonyms | FADK, FAK, FAK1, PPP1R71 |
|---|---|
| Chromosome | 8: 140657900-141002216 |
| Predicted location | Intracellular |
| Essential gene | Yes |
| Protein class | Cancer-related genes, Disease related genes, Enzymes, Essential proteins, Plasma proteins, Potential drug targets, Predicted intracellular proteins |
| Molecular function | Developmental protein, Kinase, Transferase, Tyrosine-protein kinase |
| Biological process | Angiogenesis |
Function
Non-receptor protein-tyrosine kinase that plays an essential role in regulating cell migration, adhesion, spreading, reorganization of the actin cytoskeleton, formation and disassembly of focal adhesions and cell protrusions, cell cycle progression, cell proliferation and apoptosis. Required for early embryonic development and placenta development. Required for embryonic angiogenesis, normal cardiomyocyte migration and proliferation, and normal heart development. Regulates axon growth and neuronal cell migration, axon branching and synapse formation; required for normal development of the nervous system. Plays a role in osteogenesis and differentiation of osteoblasts. Functions in integrin signal transduction, but also in signaling downstream of numerous growth factor receptors, G-protein coupled receptors (GPCR), EPHA2, netrin receptors and LDL receptors. Forms multisubunit signaling complexes with SRC and SRC family members upon activation; this leads to the phosphorylation of additional tyrosine residues, creating binding sites for scaffold proteins, effectors and substrates. Regulates numerous signaling pathways. Promotes activation of phosphatidylinositol 3-kinase and the AKT1 signaling cascade. Promotes activation of MAPK1/ERK2, MAPK3/ERK1 and the MAP kinase signaling cascade. Promotes localized and transient activation of guanine nucleotide exchange factors (GEFs) and GTPase-activating proteins (GAPs), and thereby modulates the activity of Rho family GTPases. Signaling via CAS family members mediates activation of RAC1. Phosphorylates NEDD9 following integrin stimulation. Recruits the ubiquitin ligase MDM2 to P53/TP53 in the nucleus, and thereby regulates P53/TP53 activity, P53/TP53 ubiquitination and proteasomal degradation. Phosphorylates SRC; this increases SRC kinase activity. Phosphorylates ACTN1, ARHGEF7, GRB7, RET and WASL. Promotes phosphorylation of PXN and STAT1; most likely PXN and STAT1 are phosphorylated by a SRC family kinase that is recruited to autophosphorylated PTK2/FAK1, rather than by PTK2/FAK1 itself. Promotes phosphorylation of BCAR1; GIT2 and SHC1; this requires both SRC and PTK2/FAK1. Promotes phosphorylation of BMX and PIK3R1. Isoform 6 (FRNK) does not contain a kinase domain and inhibits PTK2/FAK1 phosphorylation and signaling. Its enhanced expression can attenuate the nuclear accumulation of LPXN and limit its ability to enhance serum response factor (SRF)-dependent gene transcription. Isoform 6 (FRNK) does not contain a kinase domain and inhibits PTK2/FAK1 phosphorylation and signaling. Its enhanced expression can attenuate the nuclear accumulation of LPXN and limit its ability to enhance serum response factor (SRF)-dependent gene transcription
Human Protein Atlas · Open Targets · UniProt
Gene annotation from the Human Protein Atlas and UniProt; see sources & licences.