molecular function |
| GO:0010285 | | L,L-diaminopimelate aminotransferase activity | | Catalysis of the reaction: 2-oxoglutarate + LL-2,6-diaminopimelate = (S)-2,3,4,5-tetrahydrodipicolinate + L-glutamate + H(2)O + H(+). |
| GO:0003824 | | catalytic activity | | Catalysis of a biochemical reaction at physiological temperatures. In biologically catalyzed reactions, the reactants are known as substrates, and the catalysts are naturally occurring macromolecular substances known as enzymes. Enzymes possess specific binding sites for substrates, and are usually composed wholly or largely of protein, but RNA that has catalytic activity (ribozyme) is often also regarded as enzymatic. |
| GO:0030170 | | pyridoxal phosphate binding | | Interacting selectively and non-covalently with pyridoxal 5' phosphate, 3-hydroxy-5-(hydroxymethyl)-2-methyl4-pyridine carboxaldehyde 5' phosphate, the biologically active form of vitamin B6. |
| GO:0008483 | | transaminase activity | | Catalysis of the transfer of an amino group to an acceptor, usually a 2-oxo acid. |
| GO:0016740 | | transferase activity | | Catalysis of the transfer of a group, e.g. a methyl group, glycosyl group, acyl group, phosphorus-containing, or other groups, from one compound (generally regarded as the donor) to another compound (generally regarded as the acceptor). Transferase is the systematic name for any enzyme of EC class 2. |
biological process |
| GO:0009058 | | biosynthetic process | | The chemical reactions and pathways resulting in the formation of substances; typically the energy-requiring part of metabolism in which simpler substances are transformed into more complex ones. |
| GO:0009089 | | lysine biosynthetic process via diaminopimelate | | The chemical reactions and pathways resulting in the formation of lysine, via the intermediate diaminopimelate. |
| GO:0033362 | | lysine biosynthetic process via diaminopimelate, diaminopimelate-aminotransferase pathway | | The chemical reactions and pathways resulting in the formation of lysine, via the intermediate diaminopimelate; in this pathway tetrahydrodipicolinate is converted to meso-diaminopimelate in two enzymatic steps. |