All terms in GO
| Label | Id | Description |
|---|---|---|
| GO_0031198 | GO_0031198 | |
| GO_0031199 | GO_0031199 | |
| GO_0031190 | GO_0031190 | |
| GO_0031191 | GO_0031191 | |
| GO_0031192 | GO_0031192 | |
| GO_0031193 | GO_0031193 | |
| GO_0031194 | GO_0031194 | |
| anther septum development | GO_0080128 | [The process whose specific outcome is the progression of the anther septum over time, from its formation to the mature structure. The anther septum is a thin partition or stretch of cells that are present in the anther dehiscence zone.] |
| plant septum development | GO_1905328 | [The process whose specific outcome is the progression of a septum over time, from its formation to the mature structure.] |
| proteasome core complex assembly | GO_0080129 | [The aggregation, arrangement and bonding together of a mature, active 20S proteasome core particle complex that does not contain any regulatory particles.] |
| proteasome assembly | GO_0043248 | [The aggregation, arrangement and bonding together of a mature, active proteasome complex.] |
| ovary septum development | GO_0080126 | [The process whose specific outcome is the progression of the ovary septum over time, from its formation to the mature structure. The ovary septum is the thin partition that divides the ovary, the basal portion of a carpel or group of fused carpels, that encloses the ovule(s).] |
| fruit septum development | GO_0080127 | [The process whose specific outcome is the progression of the fruit septum over time, from its formation to the mature structure. The fruit septum is a thin partition or membrane that divides a cavity or a mass of tissue in the fruit.] |
| pheophytinase activity | GO_0080124 | [Catalysis of the reaction: pheophytin + H2O = phytol + pheophorbide.] |
| obsolete multicellular structure septum development | GO_0080125 | [OBSOLETE. The process whose specific outcome is the progression of the multicellular structure septum over time, from its formation to the mature structure. The multicellular structure septum is the thin partition or membrane that divides a cavity or a mass of tissue.] |
| AMP transmembrane transporter activity | GO_0080122 | [Enables the transfer of AMP, adenosine monophosphate, from one side of a membrane to the other.] |
| AMP transport | GO_0080121 | [The directed movement of AMP, adenosine monophosphate, into, out of or within a cell, or between cells, by means of some agent such as a transporter or pore.] |
| jasmonate-amino synthetase activity | GO_0080123 | [Catalysis of the reaction: jasmonate + an amino acid = an amide-linked jasmonyl-amino acid conjugate. The substrates of this reaction include non-standard amino acids, such as ACC (1-aminocyclopropane-1-carboxylate).] |
| CAAX-box protein maturation | GO_0080120 | [A series of specific posttranslational modifications to the CAAX box region of CAAX box proteins. CAAX box proteins are eukaryotic proteins that contain a CAAX motif where the C is a cysteine, the two A residues are aliphatic amino acids and the X can be one of several amino acids. The CAAX-box proteins undergo three sequential, enzymatic, post-translational modifications essential to their targeting: First, the proteins are prenylated by one of two prenyltransferases called farnesyltransferase and geranylgeranyltransferase-I. Prenylation results in the covalent attachment of either farnesyl or geranylgeranyl isoprenoid groups to the cysteine in the CAAX box motif. Prenylation is followed by proteolytic removal of the last three amino acids of the protein (AAX). Finally, the newly exposed carboxylate group of the isoprenylcysteine is methylated by an ER-associated prenyl-dependent carboxylmethyltransferase.] |
| protein prenylation | GO_0018342 | [The covalent attachment of a prenyl group to a protein; geranyl, farnesyl, or geranylgeranyl groups may be added.] |