All terms in GO

Label Id Description
UDP-N-acetylglucosamine transmembrane transporter activity GO_0005462
Enables the transfer of a UDP-N-acetylglucosamine from one side of a membrane to the other. N-acetylglucosamine is a substance composed of N-acetylglucosamine, a common structural unit of oligosaccharides, in glycosidic linkage with uridine diphosphate.
UDP-N-acetylgalactosamine transmembrane transporter activity GO_0005463
Enables the transfer of a N-acetylgalactosamine from one side of a membrane to the other. N-acetylgalactosamine is a substance composed of N-acetylgalactosamine, a common structural unit of oligosaccharides, in glycosidic linkage with uridine diphosphate.
UDP-xylose transmembrane transporter activity GO_0005464
Enables the transfer of UDP-xylose from one side of a membrane to the other. UDP-xylose is a substance composed of xylose in glycosidic linkage with uridine diphosphate.
obsolete small-molecule carrier or transporter GO_0005468
OBSOLETE. (Was not defined before being made obsolete).
succinate:fumarate antiporter activity GO_0005469
Enables the transfer of a solute or solutes from one side of a membrane to the other according to the reaction: succinate(out) + fumarate(in) = succinate(in) + fumarate(out).
glycine formimidoyltransferase activity GO_0030408
Catalysis of the reaction: 5-formimidoyltetrahydrofolate + glycine = (6S)-5,6,7,8-tetrahydrofolate + N-formimidoylglycine.
glutamate formimidoyltransferase activity GO_0030409
Catalysis of the reaction: 5-formimidoyltetrahydrofolate + L-glutamate = tetrahydrofolate + N-formimidoyl-L-glutamate.
obsolete protease substrate recruitment factor activity GO_0030400
OBSOLETE. A recruiting factor or adaptor molecule associated with the proteasome that activates degradation of specific proteasomal substrates and links them to the degradation machinery; it is not involved in ubiquitination; does not possess proteolytic activity.
obsolete transcription antiterminator activity GO_0030401
OBSOLETE. Functions to prevent the termination of RNA synthesis. Acts as a regulatory device, e.g. in phage lambda, enabling a terminator to be masked from RNA polymerase so that distal genes can be expressed.
obsolete matrilysin-2 activity GO_0030402
OBSOLETE. Was not defined before being made obsolete.
obsolete collagenase 4 activity GO_0030403
OBSOLETE. Was not defined before being made obsolete.
obsolete collagenase 3 activity GO_0030404
OBSOLETE. Was not defined before being made obsolete.
obsolete matrix metalloproteinase 19 activity GO_0030405
OBSOLETE. Was not defined before being made obsolete.
obsolete matrix metalloproteinase 25 activity GO_0030406
OBSOLETE. Was not defined before being made obsolete.
GO_0030407 GO_0030407
alpha-glucoside:proton symporter activity GO_0005352
Enables the transfer of a solute or solutes from one side of a membrane to the other according to the reaction: alpha-glucoside(out) + H+(out) = alpha-glucoside(in) + H+(in). Alpha-glucosides include trehalose, maltose, turanose, isomaltose, alpha-methylglucoside, maltotriose, palatinose, trehalose and melezitose.
poly-N-acetyllactosamine catabolic process GO_0030310
The chemical reactions and pathways resulting in the breakdown of poly-N-acetyllactosamine, a carbohydrate composed of N-acetyllactosamine repeats (Gal-beta-1,4-GlcNAc-beta-1,3)n.
poly-N-acetyllactosamine metabolic process GO_0030309
The chemical reactions and pathways involving poly-N-acetyllactosamine, a carbohydrate composed of N-acetyllactosamine repeats (Gal-beta-1,4-GlcNAc-beta-1,3)n.
poly-N-acetyllactosamine biosynthetic process GO_0030311
The chemical reactions and pathways resulting in the formation of poly-N-acetyllactosamine, a carbohydrate composed of N-acetyllactosamine repeats (Gal-beta-1,4-GlcNAc-beta-1,3)n.
obsolete constitutive glucose:proton symporter activity GO_0005357
OBSOLETE. Enables the transfer of a solute or solutes from one side of a membrane to the other according to the reaction: glucose + H+ = glucose + H+. This activity is constitutive and therefore always present, regardless of demand. Symporter activity enables the active transport of a solute across a membrane by a mechanism whereby two or more species are transported together in the same direction in a tightly coupled process not directly linked to a form of energy other than chemiosmotic energy.