All terms in GO
| Label | Id | Description |
|---|---|---|
| eukaryotic translation initiation factor 2alpha kinase activity | GO_0004694 | [Catalysis of the reaction: ATP + [eukaryotic translation initiation factor 2 alpha subunit] = ADP + [eukaryotic translation initiation factor 2 alpha subunit] phosphate.] |
| translation regulator activity | GO_0045182 | [Any molecular function involved in the initiation, activation, perpetuation, repression or termination of polypeptide synthesis at the ribosome.] |
| negative regulation of gliogenesis | GO_0014014 | [Any process that stops, prevents, or reduces the frequency, rate or extent of gliogenesis, the formation of mature glia.] |
| GO_0004695 | GO_0004695 | |
| GO_0004696 | GO_0004696 | |
| Schwann cell proliferation involved in axon regeneration | GO_0014011 | [The multiplication or reproduction of Schwann cells by cell division, resulting in the expansion of their population in response to an axonal lesion. The newly generated Schwann cells support subsequent axon regeneration in the peripheral nervous system.] |
| peripheral nervous system axon regeneration | GO_0014012 | [The regrowth of axons outside the central nervous system (outside the brain and spinal cord) following an axonal injury.] |
| protein kinase C activity | GO_0004697 | [Catalysis of the reaction: ATP + a protein = ADP + a phosphoprotein. This reaction requires diacylglycerol.] |
| calcium-dependent protein kinase C activity | GO_0004698 | [Catalysis of the reaction: ATP + a protein = ADP + a phosphoprotein. This reaction requires diacylglycerol and calcium.] |
| calcium-independent protein kinase C activity | GO_0004699 | [Catalysis of the reaction: ATP + a protein = ADP + a phosphoprotein. This reaction requires diacylglycerol but not calcium.] |
| notochord formation | GO_0014028 | [The formation of the notochord from the chordamesoderm. The notochord is composed of large cells packed within a firm connective tissue sheath and is found in all chordates at the ventral surface of the neural tube. In vertebrates, the notochord contributes to the vertebral column.] |
| neural crest formation | GO_0014029 | [The formation of the specialized region of ectoderm between the neural ectoderm (neural plate) and non-neural ectoderm. The neural crest gives rise to the neural crest cells that migrate away from this region as neural tube formation procedes.] |
| GO_0014026 | GO_0014026 | |
| secondary neural tube rod cavitation | GO_0014027 | [The process of medullary cavitation, which is the formation of a lumen in the medullary cord during secondary neurulation, producing the neural tube.] |
| tube lumen cavitation | GO_0060605 | [The formation of a lumen by hollowing out a solid rod or cord.] |
| secondary neural tube formation | GO_0014021 | [The formation of the neural tube by coalescence of mesenchymal cells followed by their conversion to epithelial cells to form a solid cord that subsequently hollows out (cavitates) to create a hollow tube. Secondary neurulation is the typical mechanism of formation of the neural tube posterior to the posterior neuropore in mammals.] |
| neural rod cavitation | GO_0014024 | [The process of rod cavitation, which is the formation of a lumen in the neural rod during primary neurulation, producing the neural tube.] |
| primary neural tube formation | GO_0014020 | [The formation of the neural tube from an epithelial cell sheet (the neuroepithelium or neural plate). In primary neurulation, the cells surrounding the neural plate direct the neural plate cells to proliferate, invaginate, and pinch off from the surface to form a hollow epithelial tube. Primary neurulation is the typical mechanism of formation of the anterior neural tube.] |
| neural keel formation | GO_0014025 | [The formation of a thickened region of the neurectoderm that is roughly triangular in cross section. The neural keel develops from the neural plate and develops into the neural rod. Neural keel formation occurs during primary neurulation in teleosts.] |
| neural rod formation | GO_0014023 | [The formation of a solid rod of neurectoderm derived from the neural keel. The neural rod is roughly circular in cross section. Neural rod formation occurs during primary neurulation in teleosts.] |