All terms in GO
| Label | Id | Description |
|---|---|---|
| oligodendrocyte development | GO_0014003 | [The process aimed at the progression of an oligodendrocyte over time, from initial commitment of the cell to a specific fate, to the fully functional differentiated cell. An oligodendrocyte is a type of glial cell involved in myelinating the axons in the central nervous system.] |
| GO_0004684 | GO_0004684 | |
| GO_0004685 | GO_0004685 | |
| sclerenchyma cell differentiation | GO_0014001 | [The process in which a relatively unspecialized cell acquires specialized features of a sclerenchyma cell. A sclerenchyma cell is a plant cell with thick lignified walls, normally dead at maturity and specialized for structural strength. Includes fiber cells, that are greatly elongated; and sclereids, that are more isodiametric. Intermediate types exist. Cells may or may not be devoid of protoplasm at maturity. Cell form and size are variable.] |
| elongation factor-2 kinase activity | GO_0004686 | [Catalysis of the reaction: ATP + [elongation factor 2] = ADP + [elongation factor 2] phosphate.] |
| myosin light chain kinase activity | GO_0004687 | [Catalysis of the reaction: ATP + myosin-light-chain = ADP + myosin-light-chain phosphate.] |
| GO_0004688 | GO_0004688 | |
| phosphorylase kinase activity | GO_0004689 | [Catalysis of the reaction: 4 ATP + 2 phosphorylase b = 4 ADP + phosphorylase a.] |
| neuroblast development | GO_0014019 | [The process aimed at the progression of a neuroblast over time, from initial commitment of the cell to a specific state, to the mature neuroblast. It does not include processes where the neuroblast turns into a glial cell or a neuron.] |
| neuroblast differentiation | GO_0014016 | [The process in which a relatively unspecialized cell acquires specialized features of a neuroblast. There are at least four stages through which the pluripotent cells of epiblast or blastula become neuroblasts.] |
| cyclic nucleotide-dependent protein kinase activity | GO_0004690 | [Catalysis of the reaction: ATP + a protein = ADP + a phosphoprotein. This reaction requires the presence of a cyclic nucleotide.] |
| cyclic nucleotide binding | GO_0030551 | [Interacting selectively and non-covalently with a cyclic nucleotide, a nucleotide in which the phosphate group is in diester linkage to two positions on the sugar residue.] |
| neuroblast fate commitment | GO_0014017 | [The process in which the developmental fate of a cell becomes restricted such that it will differentiate into a neuroblast.] |
| neuroblast fate specification | GO_0014018 | [The process in which a cell becomes capable of differentiating autonomously into a neuroblast in an environment that is neutral with respect to the developmental pathway. Upon specification, the cell fate can be reversed.] |
| cAMP binding | GO_0030552 | [Interacting selectively and non-covalently with cAMP, the nucleotide cyclic AMP (adenosine 3',5'-cyclophosphate).] |
| cGMP-dependent protein kinase activity | GO_0004692 | [Catalysis of the reaction: ATP + a protein = ADP + a phosphoprotein. This reaction requires the presence of cGMP.] |
| cGMP binding | GO_0030553 | [Interacting selectively and non-covalently with cGMP, the nucleotide cyclic GMP (guanosine 3',5'-cyclophosphate).] |
| positive regulation of gliogenesis | GO_0014015 | [Any process that activates or increases the frequency, rate or extent of gliogenesis, the formation of mature glia.] |
| regulation of gliogenesis | GO_0014013 | [Any process that modulates the frequency, rate or extent of gliogenesis, the formation of mature glia.] |
| regulation of neurogenesis | GO_0050767 | [Any process that modulates the frequency, rate or extent of neurogenesis, the generation of cells in the nervous system.] |