All terms in GO

Label Id Description
obsolete oxidoreductase activity, acting on diphenols and related substances as donors, other acceptors GO_0016683
OBSOLETE. Catalysis of an oxidation-reduction (redox) reaction in which a diphenol, or related compound, acts as a hydrogen or electron donor and reduces an acceptor other than a cytochrome, NAD, NADP or oxygen.
obsolete oxidoreductase activity, acting on diphenols and related substances as donors, cytochrome as acceptor GO_0016681
OBSOLETE. Catalysis of an oxidation-reduction (redox) reaction in which a diphenol, or related compound, acts as a hydrogen or electron donor and reduces a cytochrome.
oxidoreductase activity, acting on diphenols and related substances as donors, NAD or NADP as acceptor GO_0016680
Catalysis of an oxidation-reduction (redox) reaction in which a diphenol, or related compound, acts as a hydrogen or electron donor and reduces NAD or NADP.
oxidoreductase activity, acting on hydrogen as donor, iron-sulfur protein as acceptor GO_0016699
Catalysis of an oxidation-reduction (redox) reaction in which hydrogen acts as an electron donor and reduces an iron-sulfur protein.
GO_0016698 GO_0016698
oxidoreductase activity, acting on hydrogen as donor, cytochrome as acceptor GO_0016697
Catalysis of an oxidation-reduction (redox) reaction in which hydrogen acts as an electron donor and reduces a cytochrome.
obsolete bacterial catalase-peroxidase activity GO_0016694
OBSOLETE. (Was not defined before being made obsolete).
GO_0016693 GO_0016693
NADH peroxidase activity GO_0016692
Catalysis of the reaction: H(2)O(2) + H(+) + NADH = 2 H(2)O + NAD(+).
chloride peroxidase activity GO_0016691
Catalysis of the reaction: 2 R-H + 2 chloride + hydrogen peroxide = 2 R-Cl + 2 H2O.
diarylpropane peroxidase activity GO_0016690
Catalysis of the reaction: (3,4-dimethoxyphenyl)methanol + H2O2 = 3,4-dimethoxybenzaldehyde + 2 H2O.
tRNA wobble guanine modification GO_0002099
The process in which a guanine in t position 34 of a tRNA is post-transcriptionally modified.
polkadots GO_0002096
A punctate, filamentous structure composed of Bcl10 that appears in the cytoplasm of T-cells shortly after T-cell receptor stimulation. Polkadots stands for Punctate Oligomeric Killing and Activating DOmains Transducing Signals.
caveolar macromolecular signaling complex GO_0002095
A complex composed of proteins required for beta adrenergic receptor activation of protein kinase A. It includes the Cav 12. subunit of L-type calcium channel, protein kinase A regulatory subunit 2(PKAR2), adenyl cyclase, beta-adrenergic receptor, G-alpha-S, protein phosphatase 2A (PP2A) and caveolin 3 (CAV3).
auditory receptor cell morphogenesis GO_0002093
Any process that alters the size or shape of an auditory receptor cell.
lens morphogenesis in camera-type eye GO_0002089
The process in which the anatomical structures of the lens are generated and organized. The lens is a transparent structure in the eye through which light is focused onto the retina. An example of this process is found in Mus musculus.
lens development in camera-type eye GO_0002088
The process whose specific outcome is the progression of the lens over time, from its formation to the mature structure. The lens is a transparent structure in the eye through which light is focused onto the retina. An example of this process is found in Mus musculus.
regulation of respiratory gaseous exchange by nervous system process GO_0002087
A process carried out by the nervous system that is required for the proper control of respiratory gaseous exchange. This process occurs in the respiratory center of the brain in vertebrates.
diaphragm contraction GO_0002086
A process in which force is generated within involuntary skeletal muscle tissue, resulting in a change in muscle geometry. This process occurs in the diaphragm. Force generation involves a chemo-mechanical energy conversion step that is carried out by the actin/myosin complex activity, which generates force through ATP hydrolysis. The diaphragm is a striated muscle that is necessary for the process of respiratory gaseous exchange.
involuntary skeletal muscle contraction GO_0003011
A process in which force is generated within involuntary skeletal muscle tissue, resulting in a change in muscle geometry. Force generation involves a chemo-mechanical energy conversion step that is carried out by the actin/myosin complex activity, which generates force through ATP hydrolysis. Involuntary skeletal muscle is skeletal muscle that is not under conscious control.