All terms in GO

Label Id Description
peptidyl-S-palmitoleyl-L-cysteine biosynthetic process from peptidyl-cysteine GO_0019939
The modification of peptidyl-cysteine to form peptidyl-S-palmitoleyl-L-cysteine specifically.
cis-14-hydroxy-10,13-dioxo-7-heptadecenoic acid peptidyl-aspartate ester biosynthetic process from peptidyl-aspartic acid GO_0019930
The modification of peptidyl-aspartic acid to form peptidyl-cis-14-hydroxy-10,13-dioxo-7-heptadecenoic acid aspartate ester, typical of the barley lipid transfer protein 1.
obsolete protein-chromophore linkage via peptidyl-N6-3-dehydroretinal-L-lysine GO_0019931
OBSOLETE. The modification of peptidyl-lysine to form N6-3,4-didehydroretinylidene-L-lysine.
cAMP-mediated signaling GO_0019933
Any intracellular signal transduction in which the signal is passed on within the cell via cyclic AMP (cAMP). Includes production of cAMP, and downstream effectors that further transmit the signal within the cell.
cyclic-nucleotide-mediated signaling GO_0019935
Any intracellular signal transduction in which the signal is passed on within the cell via a cyclic nucleotide. Includes production or release of the cyclic nucleotide, and downstream effectors that further transmit the signal within the cell.
obsolete inositol phospholipid-mediated signaling GO_0019936
OBSOLETE. (Was not defined before being made obsolete).
protein catenane formation via N6-(L-isoaspartyl)-L-lysine, autocatalytic GO_0019937
The autocatalytic formation of isopeptide bonds by ligation of peptidyl-lysine and peptidyl-asparagine residues; known to occur in the capsid of some bacteriophage, such as HK97, where it is thought to provide a mechanism for stabilizing the capsid.
protein catenane formation GO_0018419
The aggregation, arrangement and bonding together of a protein structure comprising two or more rings that are interlocked but not covalently joined; resembling the links of a chain.
peptide cross-linking via N6-(L-isoaspartyl)-L-lysine GO_0018420
The formation of isopeptide bonds by ligation of peptidyl-lysine and peptidyl-asparagine residues.
peptide cross-linking via N6-(L-isoaspartyl)-L-lysine, presumed catalytic GO_0019938
The formation of isopeptide bonds by ligation of peptidyl-lysine and peptidyl-asparagine residues; occurs in mammals in proteins as yet unidentified by a mechanism probably analogous to that of transglutaminase reactions.
high-affinity tryptophan transmembrane transporter activity GO_0005300
Catalysis of the high-affinity transfer of L-tryptophan from one side of a membrane to the other. Tryptophan is 2-amino-3-(1H-indol-3-yl)propanoic acid. In high-affinity transport the transporter is able to bind the solute even if it is only present at very low concentrations.
obsolete valine/tyrosine/tryptophan permease activity GO_0005301
OBSOLETE. (Was not defined before being made obsolete).
L-tyrosine transmembrane transporter activity GO_0005302
Enables the transfer of L-tyrosine from one side of a membrane to the other. L-tyrosine is 2-amino-3-(4-hydroxyphenyl)propanoic acid.
L-valine transmembrane transporter activity GO_0005304
Enables the transfer of L-valine from one side of a membrane to the other. L-valine is 2-amino-3-methylbutanoic acid.
GO_0005306 GO_0005306
choline:sodium symporter activity GO_0005307
Enables the transfer of a solute or solutes from one side of a membrane to the other according to the reaction: choline(out) + Na+(out) = choline(in) + Na+(in).
creatine transmembrane transporter activity GO_0005308
Enables the transfer of creatine from one side of a membrane to the other. Creatine is a compound synthesized from the amino acids arginine, glycine, and methionine that occurs in muscle.
creatine:sodium symporter activity GO_0005309
Enables the transfer of a solute or solutes from one side of a membrane to the other according to the reaction: creatine(out) + Na+(out) = creatine(in) + Na+(in).
obsolete SUMO-dependent protein catabolic process GO_0019940
OBSOLETE. (Was not defined before being made obsolete).
obsolete NEDD8 class-dependent protein catabolic process GO_0019942
OBSOLETE. The chemical reactions and pathways resulting in the breakdown of a protein or peptide by hydrolysis of its peptide bonds, initiated by covalent attachment of the ubiquitin-like protein NEDD8 (RUB1) to the target protein.