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N-乳酰氨基酸是普遍存在的代谢产物,它们源自CNDP2介导的乳酸和氨基酸的逆向蛋白水解作用。

N-lactoyl-amino acids are ubiquitous metabolites that originate from CNDP2-mediated reverse proteolysis of lactate and amino acids.

作者信息

Jansen Robert S, Addie Ruben, Merkx Remco, Fish Alexander, Mahakena Sunny, Bleijerveld Onno B, Altelaar Maarten, IJlst Lodewijk, Wanders Ronald J, Borst P, van de Wetering Koen

机构信息

Divisions of Molecular Oncology.

Cell Biology II, and.

出版信息

Proc Natl Acad Sci U S A. 2015 May 26;112(21):6601-6. doi: 10.1073/pnas.1424638112. Epub 2015 May 11.

DOI:10.1073/pnas.1424638112
PMID:25964343
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4450436/
Abstract

Despite technological advances in metabolomics, large parts of the human metabolome are still unexplored. In an untargeted metabolomics screen aiming to identify substrates of the orphan transporter ATP-binding cassette subfamily C member 5 (ABCC5), we identified a class of mammalian metabolites, N-lactoyl-amino acids. Using parallel protein fractionation in conjunction with shotgun proteomics on fractions containing N-lactoyl-Phe-forming activity, we unexpectedly found that a protease, cytosolic nonspecific dipeptidase 2 (CNDP2), catalyzes their formation. N-lactoyl-amino acids are ubiquitous pseudodipeptides of lactic acid and amino acids that are rapidly formed by reverse proteolysis, a process previously considered to be negligible in vivo. The plasma levels of these metabolites strongly correlate with plasma levels of lactate and amino acid, as shown by increased levels after physical exercise and in patients with phenylketonuria who suffer from elevated Phe levels. Our approach to identify unknown metabolites and their biosynthesis has general applicability in the further exploration of the human metabolome.

摘要

尽管代谢组学技术取得了进展,但人类代谢组的大部分仍未被探索。在一项旨在鉴定孤儿转运蛋白ATP结合盒亚家族C成员5(ABCC5)底物的非靶向代谢组学筛选中,我们鉴定出一类哺乳动物代谢物,N-乳酰基氨基酸。通过在含有N-乳酰基苯丙氨酸形成活性的组分上结合平行蛋白质分级分离和鸟枪法蛋白质组学,我们意外地发现一种蛋白酶,胞质非特异性二肽酶2(CNDP2),催化它们的形成。N-乳酰基氨基酸是乳酸和氨基酸的普遍存在的假二肽,它们通过反向蛋白水解迅速形成,这一过程以前被认为在体内可忽略不计。这些代谢物的血浆水平与乳酸和氨基酸的血浆水平密切相关,如体育锻炼后以及苯丙酮尿症患者体内苯丙氨酸水平升高时其水平升高所示。我们识别未知代谢物及其生物合成的方法在人类代谢组的进一步探索中具有普遍适用性。

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Metabolite proofreading in carnosine and homocarnosine synthesis: molecular identification of PM20D2 as β-alanyl-lysine dipeptidase.肌肽和高肌肽合成中的代谢物校对:PM20D2作为β-丙氨酰赖氨酸二肽酶的分子鉴定。
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