In this article we will explore the different aspects of 2,4-diaminopentanoate dehydrogenase, with the aim of providing the reader with a complete and detailed analysis of this topic. From its origins to its relevance today, through its impact on different areas of society, we will immerse ourselves in a journey in which we will address its multiple facets. Through the combination of historical data, current theories and concrete examples, we aim to offer a comprehensive vision that allows a thorough understanding of the importance of 2,4-diaminopentanoate dehydrogenase in contemporary society. Whether it is a person, a concept, a date or any other element of interest, our purpose is to provide the reader with the necessary tools to delve into the fascinating world of 2,4-diaminopentanoate dehydrogenase and understand its relevance today.
2,4-diaminopentanoate dehydrogenase | |||||||||
---|---|---|---|---|---|---|---|---|---|
Identifiers | |||||||||
EC no. | 1.4.1.12 | ||||||||
CAS no. | 39346-26-4 | ||||||||
Databases | |||||||||
IntEnz | IntEnz view | ||||||||
BRENDA | BRENDA entry | ||||||||
ExPASy | NiceZyme view | ||||||||
KEGG | KEGG entry | ||||||||
MetaCyc | metabolic pathway | ||||||||
PRIAM | profile | ||||||||
PDB structures | RCSB PDB PDBe PDBsum | ||||||||
Gene Ontology | AmiGO / QuickGO | ||||||||
|
In enzymology, a 2,4-diaminopentanoate dehydrogenase (EC 1.4.1.12) is an enzyme that catalyzes the chemical reaction
The 4 substrates of this enzyme are 2,4-diaminopentanoate, H2O, NAD+, and NADP+, whereas its 5 products are 2-amino-4-oxopentanoate, NH3, NADH, NADPH, and H+.
This enzyme belongs to the family of oxidoreductases, specifically those acting on the CH-NH2 group of donors with NAD+ or NADP+ as acceptor. The systematic name of this enzyme class is 2,4-diaminopentanoate:NAD(P)+ oxidoreductase (deaminating). This enzyme is also called 2,4-diaminopentanoic acid C4 dehydrogenase. This enzyme participates in 3 metabolic pathways: lysine degradation, arginine and proline metabolism, and d-arginine and d-ornithine metabolism.