Lysine: biosynthesis, catabolism and roles

分解代谢 赖氨酸 生物合成 生物化学 化学 新陈代谢 氨基酸 基因
作者
Cody J. Hall,Tatiana P. Soares da Costa
出处
期刊:Wikijournal of science [WikiJournal User Group]
卷期号:1 (1): 4-4 被引量:17
标识
DOI:10.15347/wjs/2018.004
摘要

Amino acids are an essential building block of all life and are commonly incorporated into extending polypeptide chains to produce proteins.Lysine is one such amino acid and is classified as basic and positively charged at physiological pH due to the presence of an additional amino chemical group on the side chain.Lysine has two main biosynthetic pathways, namely the diaminopimelate and α-aminoadipate pathways, which employ different enzymes and substrates and are found in different organisms.Lysine catabolism occurs through one of several pathways, the most common of which is the saccharopine pathway.Lysine plays several roles in humans, most importantly proteinogenesis, but also in the crosslinking of collagen polypeptides, uptake of essential mineral nutrients, and in the production of carnitine, which is key in fatty acid metabolism.Furthermore, lysine is often involved in histone modifications, and thus, impacts the epigenome.Due to the importance of lysine in several biological processes, a lack of lysine can lead to several disease states including; defective connective tissues, impaired fatty acid metabolism, anaemia, and systemic protein-energy deficiency.In juxtaposition to this, an overabundance of lysine, caused by ineffective catabolism, can cause severe neurological issues.

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