BOK — BCL2 family apoptosis regulator BOK
BOK belongs to a gene co-expression module in 1 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.
BOK's module in each cell type
| Cell type | Module | Shares the module with | |
|---|---|---|---|
| Smooth muscle cells | Growth Arrest Stress Stress | C14orf132, CKAP4, CNKSR3, MXRA7, NBPF1, PTGS1, WEE1 | View in SCUBA |
About the gene
| Synonyms | BCL2L9, BOKL, MGC4631 |
|---|---|
| Chromosome | 2: 241551424-241574131 |
| Predicted location | Membrane |
| Essential gene | No |
| Protein class | Plasma proteins, Predicted membrane proteins, Transporters |
| Biological process | Apoptosis |
Function
Apoptosis regulator that functions through different apoptotic signaling pathways. Plays a roles as pro-apoptotic protein that positively regulates intrinsic apoptotic process in a BAX- and BAK1-dependent manner or in a BAX- and BAK1-independent manner. In response to endoplasmic reticulum stress promotes mitochondrial apoptosis through downstream BAX/BAK1 activation and positive regulation of PERK-mediated unfolded protein response (By similarity). Activates apoptosis independently of heterodimerization with survival-promoting BCL2 and BCL2L1 through induction of mitochondrial outer membrane permeabilization, in a BAX- and BAK1-independent manner, in response to inhibition of ERAD- proteasome degradation system, resulting in cytochrome c release. In response to DNA damage, mediates intrinsic apoptotic process in a TP53-dependent manner. Plays a role in granulosa cell apoptosis by CASP3 activation. Plays a roles as anti-apoptotic protein during neuronal apoptotic process, by negatively regulating poly ADP-ribose polymerase-dependent cell death through regulation of neuronal calcium homeostasis and mitochondrial bioenergetics in response to NMDA excitation (By similarity). In addition to its role in apoptosis, may regulate trophoblast cell proliferation during the early stages of placental development, by acting on G1/S transition through regulation of CCNE1 expression. May also play a role as an inducer of autophagy by disrupting interaction between MCL1 and BECN1. Pro-apoptotic molecule exerting its function through the mitochondrial pathway
Human Protein Atlas · Open Targets · UniProt
Gene annotation from the Human Protein Atlas and UniProt; see sources & licences.