All terms in GO
| Label | Id | Description |
|---|---|---|
| obsolete anion:anion antiporter activity | GO_0015301 |
OBSOLETE. Enables the transfer of a solute or solutes from one side of a membrane to the other according to the reaction: anion A(out) + anion B(in) = anion A(in) + anion B(out).
|
| starch catabolic process | GO_0005983 |
The chemical reactions and pathways resulting in the breakdown of starch, the most important reserve polysaccharide in plants.
|
| sucrose metabolic process | GO_0005985 |
The chemical reactions and pathways involving sucrose, the disaccharide fructofuranosyl-glucopyranoside.
|
| sucrose biosynthetic process | GO_0005986 |
The chemical reactions and pathways resulting in the formation of sucrose, the disaccharide fructofuranosyl-glucopyranoside.
|
| lactose metabolic process | GO_0005988 |
The chemical reactions and pathways involving lactose, the disaccharide galactopyranosyl-glucose.
|
| lactose biosynthetic process | GO_0005989 |
The chemical reactions and pathways resulting in the formation of lactose, the disaccharide galactopyranosyl-glucose.
|
| calcium incorporation into metallo-oxygen cluster | GO_0030925 |
The incorporation of calcium into a metallo-oxygen cluster.
|
| metal incorporation into metallo-oxygen cluster | GO_0030923 |
The formation of a cluster of several metal atoms, including manganese or calcium, with one or more bridging (mu-bond) oxygen atoms; amino acids residues in proteins that may ligate the metal oxygen cluster are histidine, aspartate, and glutamate.
|
| calcium incorporation into metallo-oxygen cluster via bis-L-aspartato tris-L-glutamato L-histidino calcium tetramanganese tetroxide | GO_0030926 |
The incorporation of calcium into a 4Mn-Ca-4O complex by bis-L-aspartato tris-L-glutamato L-histidino calcium tetramanganese tetroxide as in the photosystem II catalytic site.
|
| manganese incorporation into metallo-oxygen cluster via bis-L-aspartato tris-L-glutamato L-histidino calcium tetramanganese tetroxide | GO_0030927 |
The incorporation of manganese into a 4Mn-Ca-4O complex by bis-L-aspartato tris-L-glutamato L-histidino calcium tetramanganese tetroxide as in the photosystem II catalytic site.
|
| manganese incorporation into metallo-oxygen cluster | GO_0030924 |
The incorporation of manganese into a metallo-oxygen cluster.
|
| GO_0030928 | GO_0030928 | |
| peptidyl-tyrosine dehydrogenation to form (Z)-2,3-didehydrotyrosine | GO_0030921 |
The oxidation of the C alpha-C beta bond of peptidyl-tyrosine to form peptidyl-(Z)-2,3-didehydrotyrosine coupled with cyclization of neighboring residues.
|
| peptidyl-tyrosine dehydrogenation | GO_0018251 |
The oxidation of the C alpha-C beta bond of peptidyl-tyrosine to form peptidyl-dehydrotyrosine coupled with cyclization of neighboring residues.
|
| peptidyl-tyrosine dehydrogenation to form (E)-2,3-didehydrotyrosine | GO_0030922 |
The oxidation of the C alpha-C beta bond of peptidyl-tyrosine to form peptidyl-(E)-2,3-didehydrotyrosine coupled with cyclization of neighboring residues.
|
| amiloride:proton antiporter activity | GO_0015308 |
Enables the transfer of a solute or solutes from one side of a membrane to the other according to the reaction: H+(out) + amiloride(in) = H+(in) + amiloride(out).
|
| amiloride transmembrane transporter activity | GO_0015240 |
Enables the transfer of amiloride from one side of a membrane to the other. Amiloride is a potent and specific inhibitor of sodium ion entry into cells. It is used as a potassium-sparing diuretic.
|
| cycloheximide:proton antiporter activity | GO_0015309 |
Enables the transfer of a solute or solutes from one side of a membrane to the other according to the reaction: H+(out) + cycloheximide(in) = H+(in) + cycloheximide(out).
|
| cycloheximide transmembrane transporter activity | GO_0015243 |
Enables the transfer of cycloheximide from one side of a membrane to the other. Cycloheximide is an antibiotic produced by Streptomyces which interferes with protein synthesis in eukaryotes.
|
| phosphate:proton symporter activity | GO_0015317 |
Enables the transfer of a solute or solutes from one side of a membrane to the other according to the reaction: phosphate(out) + H+(out) = phosphate(in) + H+(in).
|