All terms in GO
| Label | Id | Description |
|---|---|---|
| positive regulation of G2/M transition of mitotic cell cycle involved in cellular response to nitrogen starvation | GO_1905287 | [Any positive regulation of G2/M transition of mitotic cell cycle that is involved in cellular response to nitrogen starvation.] |
| sorbitol catabolic process | GO_0006062 | [The chemical reactions and pathways resulting in the breakdown of sorbitol (D-glucitol), one of the ten stereoisomeric hexitols. It can be derived from glucose by reduction of the aldehyde group.] |
| obsolete regulation of memory | GO_1905248 | [OBSOLETE. Any process that modulates the frequency, rate or extent of memory.] |
| obsolete negative regulation of memory | GO_1905249 | [OBSOLETE. Any process that stops, prevents or reduces the frequency, rate or extent of memory.] |
| plastid mRNA editing complex | GO_0031020 | [An mRNA editing complex found in a plastid.] |
| mRNA editing complex | GO_0045293 | [A protein complex that posttranscriptionally catalyzes insertion, deletion or substitution of nucleotides at multiple sites within nascent mRNA transcripts to produce mature mRNAs in eukaryotes.] |
| negative regulation of aspartic-type peptidase activity | GO_1905246 | [Any process that stops, prevents or reduces the frequency, rate or extent of aspartic-type peptidase activity.] |
| UDP-glucuronate biosynthetic process | GO_0006065 | [The chemical reactions and pathways resulting in the formation of UDP-glucuronate, a substance composed of glucuronic acid in glycosidic linkage with uridine diphosphate.] |
| UDP-glucuronate metabolic process | GO_0046398 | [The chemical reactions and pathways involving UDP-glucuronate, a substance composed of glucuronic acid in glycosidic linkage with uridine diphosphate.] |
| positive regulation of aspartic-type peptidase activity | GO_1905247 | [Any process that activates or increases the frequency, rate or extent of aspartic-type peptidase activity.] |
| nuclear migration along microfilament | GO_0031022 | [The directed movement of the nucleus along microfilaments within the cell, mediated by motor proteins.] |
| microtubule organizing center organization | GO_0031023 | [A process that is carried out at the cellular level which results in the assembly, arrangement of constituent parts, or disassembly of a microtubule organizing center, a structure from which microtubules grow.] |
| interphase microtubule organizing center assembly | GO_0031024 | [The aggregation, arrangement and bonding together of a set of components, including gamma-tubulin and other proteins, to form an interphase microtubule organizing center.] |
| ethanol catabolic process | GO_0006068 | [The chemical reactions and pathways resulting in the breakdown of ethanol, CH3-CH2-OH, a colorless, water-miscible, flammable liquid produced by alcoholic fermentation.] |
| equatorial microtubule organizing center disassembly | GO_0031025 | [The process in which the equatorial microtubule organizing center is disassembled at the end of mitosis.] |
| ethanol oxidation | GO_0006069 | [An ethanol metabolic process in which ethanol is converted to acetyl-CoA via acetaldehyde and acetate.] |
| cerebellum maturation | GO_0021590 | [A developmental process, independent of morphogenetic (shape) change, that is required for the cerebellum to attain its fully functional state. The cerebellum is the portion of the brain in the back of the head between the cerebrum and the pons. The cerebellum controls balance for walking and standing, modulates the force and range of movement and is involved in the learning of motor skills.] |
| positive regulation of neutrophil differentiation | GO_0045660 | [Any process that activates or increases the frequency, rate or extent of neutrophil differentiation.] |
| regulation of neutrophil differentiation | GO_0045658 | [Any process that modulates the frequency, rate or extent of neutrophil differentiation.] |
| cerebellar Purkinje cell layer structural organization | GO_0021693 | [The process that contributes to the act of creating the structural organization of the cerebellar Purkinje cell layer. This process pertains to the physical shaping of a rudimentary structure. The Purkinje cell layer lies just underneath the molecular layer of the cerebellar cortex. It contains the neuronal cell bodies of the Purkinje cells that are arranged side by side in a single layer. Candelabrum interneurons are vertically oriented between the Purkinje cells. Purkinje neurons are inhibitory and provide the output of the cerebellar cortex through axons that project into the white matter. Extensive dendritic trees from the Purkinje cells extend upward in a single plane into the molecular layer where they synapse with parallel fibers of granule cells.] |