All terms in GO
| Label | Id | Description |
|---|---|---|
| 5(S)-hydroxyeicosatetraenoic acid dehydrogenase activity | GO_0097265 | [Catalysis of the reaction: 5-HETE + NADP(+) = 5-oxo-ETE + NADPH + H(+).] |
| phenylacetyl-CoA 1,2-epoxidase activity | GO_0097266 | [Catalysis of the reaction: phenylacetyl-CoA + H(+) + NADPH + O2 = 2-(1,2-epoxy-1,2-dihydrophenyl)acetyl-CoA + H2O + NADP(+).] |
| omega-hydroxylase P450 pathway | GO_0097267 | [The chemical reactions and pathways by which arachidonic acid is converted to other compounds initially by omega-hydroxylation.] |
| cytoophidium | GO_0097268 | [A subcellular filamentary structure where CTP synthase is compartmentalized in a range of organisms including bacteria, yeast, fruit fly, rat and human.] |
| all-trans-decaprenyl-diphosphate synthase activity | GO_0097269 | [Catalysis of the reaction: 2-trans,6-trans-farnesyl diphosphate + 7 isopentenyl diphosphate = 7 diphosphate + all-trans-decaprenyl diphosphate.] |
| iron-sulfur-molybdenum cofactor metabolic process | GO_1901286 | [The chemical reactions and pathways involving iron-sulfur-molybdenum cofactor.] |
| iron-sulfur-molybdenum cofactor catabolic process | GO_1901287 | [The chemical reactions and pathways resulting in the breakdown of iron-sulfur-molybdenum cofactor.] |
| iron-sulfur-molybdenum cofactor biosynthetic process | GO_1901288 | [The chemical reactions and pathways resulting in the formation of iron-sulfur-molybdenum cofactor.] |
| succinyl-CoA catabolic process | GO_1901289 | [The chemical reactions and pathways resulting in the breakdown of succinyl-CoA.] |
| dishabituation | GO_0097270 | [The temporary recovery of response to a stimulus when a novel stimulus is added.] |
| nonassociative learning | GO_0046958 | [A simple form of learning whereby the repeated presence of a stimulus leads to a change in the probability or strength of the response to that stimulus. There is no association of one type of stimulus with another, rather it is a generalized response to the environment.] |
| protein localization to bud neck | GO_0097271 | [A process in which a protein is transported to, or maintained at, a location within a cellular bud neck.] |
| ammonia homeostasis | GO_0097272 | [Any biological process involved in the maintenance of an internal steady state of ammonia.] |
| creatinine homeostasis | GO_0097273 | [Any biological process involved in the maintenance of an internal steady state of creatinine.] |
| urea homeostasis | GO_0097274 | [Any biological process involved in the maintenance of an internal steady state of urea.] |
| cellular ammonia homeostasis | GO_0097275 | [Any biological process involved in the maintenance of an internal steady state of ammonia at the level of the cell.] |
| cellular creatinine homeostasis | GO_0097276 | [Any biological process involved in the maintenance of an internal steady state of creatinine at the level of the cell.] |
| cellular urea homeostasis | GO_0097277 | [Any biological process involved in the maintenance of an internal steady state of urea at the level of the cell.] |
| complement-dependent cytotoxicity | GO_0097278 | [Lysis of a cell resulting from triggering of the complement cascade. An example can be seen with complement activation and subsequent lysis of a bacterial cell as a result of the binding of IgM to the cell surface followed by the binding of complement proteins to that antibody.] |
| cell killing | GO_0001906 | [Any process in an organism that results in the killing of its own cells or those of another organism, including in some cases the death of the other organism. Killing here refers to the induction of death in one cell by another cell, not cell-autonomous death due to internal or other environmental conditions.] |