All terms in GO
| Label | Id | Description |
|---|---|---|
| obsolete C-terminal protein farnesylation | GO_0006503 | [OBSOLETE. The covalent or non-covalent attachment of a farnesyl group to the carboxy terminus of a protein.] |
| obsolete C-terminal protein geranylgeranylation | GO_0006504 | [OBSOLETE. The covalent or non-covalent attachment of a geranylgeranyl group to the carboxy-terminus of a protein.] |
| GPI anchor metabolic process | GO_0006505 | [The chemical reactions and pathways involving glycosylphosphatidylinositol anchors, molecular mechanisms for attaching membrane proteins to the lipid bilayer of cell membranes. Structurally they consist of a molecule of phosphatidylinositol to which is linked, via the C-6 hydroxyl of the inositol, a carbohydrate chain. This chain is in turn linked to the protein through an ethanolamine phosphate group, the amino group of which is in amide linkage with the C-terminal carboxyl of the protein chain, the phosphate group being esterified to the C-6 hydroxyl of the terminal mannose of the core carbohydrate chain.] |
| phosphatidylinositol metabolic process | GO_0046488 | [The chemical reactions and pathways involving phosphatidylinositol, any glycophospholipid in which a sn-glycerol 3-phosphate residue is esterified to the 1-hydroxyl group of 1D-myo-inositol.] |
| GPI anchor biosynthetic process | GO_0006506 | [The chemical reactions and pathways resulting in the formation of a glycosylphosphatidylinositol (GPI) anchor that attaches some membrane proteins to the lipid bilayer of the cell membrane. The phosphatidylinositol group is linked via the C-6 hydroxyl residue of inositol to a carbohydrate chain which is itself linked to the protein via an ethanolamine phosphate group, its amino group forming an amide linkage with the C-terminal carboxyl of the protein. Some GPI anchors have variants on this canonical linkage.] |
| GPI anchor release | GO_0006507 | [The GPI anchor metabolic process that results in enzymatic cleavage of the anchor, releasing an anchored protein from the membrane.] |
| membrane protein proteolysis | GO_0033619 | [The proteolytic cleavage of a transmembrane protein leading to the release of its intracellular or ecto-domains.] |
| obsolete ATP-dependent proteolysis | GO_0006510 | [OBSOLETE. The hydrolysis of a peptide bond or bonds within a protein using energy from the hydrolysis of ATP.] |
| modification-dependent protein catabolic process | GO_0019941 | [The chemical reactions and pathways resulting in the breakdown of a protein or peptide by hydrolysis of its peptide bonds, initiated by the covalent modification of the target protein.] |
| obsolete ubiquitin cycle | GO_0006512 | [OBSOLETE. The cyclical process by which one or more ubiquitin groups are added to (ubiquitination) and removed from (deubiquitination) a protein.] |
| GO_0006514 | GO_0006514 | |
| protein quality control for misfolded or incompletely synthesized proteins | GO_0006515 | [The chemical reactions and pathways resulting in the breakdown of misfolded or attenuated proteins.] |
| protein deglycosylation | GO_0006517 | [The removal of sugar residues from a glycosylated protein.] |
| GO_0006519 | GO_0006519 | |
| alanine biosynthetic process | GO_0006523 | [The chemical reactions and pathways resulting in the formation of alanine, 2-aminopropanoic acid.] |
| alanine catabolic process | GO_0006524 | [The chemical reactions and pathways resulting in the breakdown of alanine, 2-aminopropanoic acid.] |
| arginine biosynthetic process | GO_0006526 | [The chemical reactions and pathways resulting in the formation of arginine, 2-amino-5-(carbamimidamido)pentanoic acid.] |
| asparagine catabolic process | GO_0006530 | [The chemical reactions and pathways resulting in the breakdown of asparagine, 2-amino-3-carbamoylpropanoic acid.] |
| aspartate biosynthetic process | GO_0006532 | [The chemical reactions and pathways resulting in the formation of aspartate, the anion derived from aspartic acid, 2-aminobutanedioic acid.] |
| cysteine biosynthetic process from serine | GO_0006535 | [The chemical reactions and pathways resulting in the formation of cysteine from other compounds, including serine.] |