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蛋白质同型半胱氨酸化:高同型半胱氨酸水平病理后果的潜在机制。

Protein homocysteinylation: possible mechanism underlying pathological consequences of elevated homocysteine levels.

作者信息

Jakubowski H

机构信息

Department of Microbiology and Molecular Genetics, UMDNJ-New Jersey Medical School, Newark, NJ 07103, USA.

出版信息

FASEB J. 1999 Dec;13(15):2277-83.

Abstract

Homocysteine thiolactone, a cyclic thioester, is synthesized by certain aminoacyl-tRNA synthetases in editing or proofreading reactions that prevent translational incorporation of homocysteine into proteins. Although homocysteine thiolactone is expected to acylate amino groups in proteins, virtually nothing is known regarding reactivity of the thiolactone. Here it is shown that reactions of the thiolactone with protein lysine residues were robust under physiological conditions. In human serum incubated with homocysteine thiolactone, protein homocysteinylation was a major reaction that could be observed with as little as 10 nM thiolactone. Individual proteins were homocysteinylated at rates proportional to their lysine contents. Homocysteinylation led to protein damage, manifested as multimerization and precipitation of extensively modified proteins. Model enzymes, such as methionyl-tRNA synthetase and trypsin, were inactivated by homocysteinylation. Metabolic conversion of homocysteine to the thiolactone, protein homocysteinylation, and resulting protein damage may underlie involvement of Hcy in the pathology of vascular disease.-Jakubowski, H. Protein homocysteinylation: possible mechanism underlying pathological consequences of elevated homocysteine levels.

摘要

同型半胱氨酸硫内酯是一种环状硫酯,由某些氨酰 - tRNA合成酶在防止同型半胱氨酸翻译掺入蛋白质的编辑或校对反应中合成。尽管预计同型半胱氨酸硫内酯会使蛋白质中的氨基酰化,但关于硫内酯的反应活性实际上所知甚少。本文表明,在生理条件下,硫内酯与蛋白质赖氨酸残基的反应很强烈。在用同型半胱氨酸硫内酯孵育的人血清中,蛋白质同型半胱氨酸化是主要反应,低至10 nM硫内酯即可观察到。单个蛋白质的同型半胱氨酸化速率与其赖氨酸含量成正比。同型半胱氨酸化导致蛋白质损伤,表现为大量修饰蛋白质的多聚化和沉淀。甲硫氨酰 - tRNA合成酶和胰蛋白酶等模型酶会因同型半胱氨酸化而失活。同型半胱氨酸向硫内酯的代谢转化、蛋白质同型半胱氨酸化以及由此导致的蛋白质损伤可能是同型半胱氨酸参与血管疾病病理过程的潜在机制。 - 雅库博夫斯基,H. 蛋白质同型半胱氨酸化:高同型半胱氨酸水平病理后果的可能机制

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