All terms in GO

Label Id Description
all-trans-undecaprenyl-phosphate mannosyltransferase activity GO_0036427
Catalysis of the reaction: all-trans-undecaprenyl phosphate + GDP-alpha-D-mannose = D-mannosyl undecaprenyl phosphate + GDP.
undecaprenyl-phosphate mannosyltransferase activity GO_0047267
Catalysis of the reaction: GDP-mannose + undecaprenyl phosphate = GDP + D-mannosyl-1-phosphoundecaprenol.
ditrans, polycis-undecaprenyl-phosphate mannosyltransferase activity GO_0036426
Catalysis of the reaction: ditrans,octacis-undecaprenyl phosphate + GDP-alpha-D-mannose = D-mannosyl undecaprenyl phosphate+ GDP.
obsolete D-phosphoserine phosphatase activity GO_0036425
OBSOLETE. Catalysis of the reaction: O-phospho-D-serine + H2O = L-serine + phosphate, on a free amino acid.
L-phosphoserine phosphatase activity GO_0036424
Catalysis of the reaction: O-phospho-L-serine + H2O = L-serine + phosphate, on a free amino acid.
adenosylcobinamide kinase (ATP-specific) activity GO_0036429
Catalysis of the reaction: adenosylcobinamide + ATP = adenosylcobinamide phosphate + ADP + H+.
adenosylcobinamide kinase (GTP-specific) activity GO_0036428
Catalysis of the reaction: adenosylcobinamide + GTP = adenosylcobinamide phosphate + GDP + H+.
L-methionine-(S)-S-oxide reductase activity GO_0036456
Catalysis of the reaction: L-methionine (S)-S-oxide + thioredoxin -> L-methionine + thioredoxin disulfide + H2O.
L-methionine:thioredoxin-disulfide S-oxidoreductase activity GO_0033744
Catalysis of the reaction: L-methionine + thioredoxin disulfide + H2O = L-methionine (S)-S-oxide + thioredoxin.
positive regulation of transcription from RNA polymerase II promoter in response to amino acid starvation GO_0061412
Any process that increases the frequency, rate or extent of transcription from an RNA polymerase II promoter as a result of deprivation of amino acids.
iron-sulfur transferase activity GO_0036455
Catalysis of the transfer of a iron-sulfur cluster from one compound (donor) to another (acceptor).
positive regulation of transcription from RNA polymerase II promoter in response to cold GO_0061411
Any process that increases the frequency, rate or extent of transcription from an RNA polymerase II promoter as a result of a cold stimulus, a temperature stimulus below the optimal temperature for that organism.
amphisome membrane GO_1904930
Any membrane that is part of an amphisome.
positive regulation of transcription from RNA polymerase II promoter in response to ethanol GO_0061410
Any process that activates or increases the frequency, rate or extent of transcription from an RNA polymerase II promoter as a result of an ethanol stimulus.
negative regulation of cartilage condensation GO_1904932
Any process that stops, prevents or reduces the frequency, rate or extent of cartilage condensation.
obsolete regulation of transcription from RNA polymerase II promoter in response to salt stress GO_0061416
OBSOLETE. Any process that modulates the frequency, rate or extent of transcription from an RNA polymerase II promoter as a result of a stimulus indicating the organism is under salt stress. The stress is usually an increase or decrease in the concentration of salt (particularly but not exclusively sodium and chloride ions) in the environment.
MCM complex binding GO_1904931
Binding to an MCM complex.
GO_0036459 GO_0036459
negative regulation of transcription from RNA polymerase II promoter by a nonfermentable carbon source GO_0061415
A transcription regulation process in which the presence of a nonfermentable carbon source leads to a decrease of the frequency, rate, or extent of transcription, from an RNA polymerase II promoter, of specific genes involved in the metabolism of other carbon sources.
regulation of transcription from RNA polymerase II promoter by a nonfermentable carbon source GO_0061413
A transcription regulation process in which the presence of a nonfermentable carbon source leads to the modulation of the frequency, rate, or extent of transcription, from an RNA polymerase II promoter, of specific genes involved in the metabolism of other carbon sources.