All terms in GO

Label Id Description
negative regulation of premature acrosome loss GO_0061950
Any process that stops, prevents or reduces the discharge, by sperm, of a single, anterior secretory granule before the sperm reaches to the zona pellucida of the oocyte. The process begins with the fusion of the outer acrosomal membrane with the sperm plasma membrane and ends with the exocytosis of the acrosomal contents.
regulation of premature acrosome loss GO_0061949
Any process that modulates the rate, frequency or extent of the discharge, by sperm, of a single, anterior secretory granule before the sperm reaches to the zona pellucida of the oocyte. The process begins with the fusion of the outer acrosomal membrane with the sperm plasma membrane and ends with the exocytosis of the acrosomal contents.
positive regulation of actin filament depolymerization involved in acrosome reaction GO_0061955
Any process that increases the rate or exent of actin depolymerization as part of the acrosome reaction. This allows the acrosomal membrane and plasma membrane to fuse.
positive regulation of actin filament polymerization involved in sperm capacitation GO_0061954
Any process that icreases the rate or extent of actin polymerization as part of sperm capacitation. This process prevents a spontaneous acrosome reaction.
mRNA (adenine-N1-)-methyltransferase activity GO_0061953
Catalysis of the reaction: S-adenosyl-L-methionine + adenine in mRNA = S-adenosyl-L-homocysteine + N(1)-methyladenine in mRNA.
midbody abscission GO_0061952
The process by which the midbody, the cytoplasmic bridge that connects the two prospective daughter cells, is severed at the end of mitotic cytokinesis, resulting in two separate daughter cells.
response to (R)-carnitine GO_0061959
Any process that results in a change in state or activity of a cell or an organism (in terms of movement, secretion, enzyme production, gene expression, etc.) as a result of an (R)-carnitine stimulus.
NVT complex GO_0061957
A protein complex that is capable of contributing to protein localization by the NVT pathway. In fission yeast, the Nvt complex consists of Ape2, Lap2 and Nbr1.
penetration of cumulus oophorus GO_0061956
The infiltration by sperm of the cumulus oophorus to reach the oocyte. The process involves digestive enzymes from a modified lysosome called the acrosome, situated at the head of the sperm.
aminoglycoside 3-N-acetyltransferase activity GO_0046353
Catalysis of the reaction: acetyl-CoA + aminoglycoside = CoA + 3-N-acetylaminoglycoside. This is acetylation of the 3-amino group of the central deoxystreptamine ring.
mannan catabolic process GO_0046355
The chemical reactions and pathways resulting in the breakdown of mannan, the main hemicellulose of soft (coniferous) wood, made up of D-mannose, D-glucose and D-galactose.
galactarate biosynthetic process GO_0046357
The chemical reactions and pathways resulting in the formation of galactarate, the anion of galactaric acid.
butyrate catabolic process GO_0046359
The chemical reactions and pathways resulting in the breakdown of butyrate, the anion of butyric acid.
negative regulation of heme oxygenase activity GO_0061962
Any process that stops, prevents, or reduces the frequency or rate of heme oxygenase activity.
regulation of heme oxygenase activity GO_0061960
Any process that modulates the frequency, or rate of heme oxygenase activity.
positive regulation of heme oxygenase activity GO_0061961
Any process that activates or increases the frequency or rate of heme oxygenase activity.
establishment of left/right asymmetry GO_0061966
The initial formation of the type asymmetry in an organism's body plan or part of an organism with respect to the left and right halves.
positive regulation of entry into reproductive diapause GO_0061965
Any process that activates or increases the rate or extent of the dormancy process that results in entry into reproductive diapause. Reproductive diapause is a form of diapause where the organism itself will remain fully active, including feeding and other routine activities, but the reproductive organs experience a tissue-specific reduction in metabolism, with characteristic triggering and releasing stimuli.
regulation of entry into reproductive diapause GO_0061963
Any process that modulates the rate or extent of the dormancy process that results in entry into reproductive diapause. Reproductive diapause is a form of diapause where the organism itself will remain fully active, including feeding and other routine activities, but the reproductive organs experience a tissue-specific reduction in metabolism, with characteristic triggering and releasing stimuli.
negative regulation of entry into reproductive diapause GO_0061964
Any process that stops, prevents, or reduces the frequency, rate or extent of the dormancy process that results in entry into reproductive diapause. Reproductive diapause is a form of diapause where the organism itself will remain fully active, including feeding and other routine activities, but the reproductive organs experience a tissue-specific reduction in metabolism, with characteristic triggering and releasing stimuli.