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甲硫氨酸γ-裂解酶:独特的反应机制、生理作用以及在抗感染和抗肿瘤治疗中的应用。

Methionine gamma-lyase: the unique reaction mechanism, physiological roles, and therapeutic applications against infectious diseases and cancers.

机构信息

Institute for Advanced Biosciences, Keio University, Tsuruoka, Yamagata, Japan.

出版信息

IUBMB Life. 2009 Nov;61(11):1019-28. doi: 10.1002/iub.255.

Abstract

Sulfur-containing amino acids (SAAs) are essential components in many biological processes and ubiquitously distributed to all organisms. Both biosynthetic and catabolic pathways of SAAs are heterogeneous among organisms and between developmental stages, and regulated by the environmental changes. Limited lineage of organisms ranging from archaea to plants, but not human, possess a unique enzyme methionine gamma-lyase (MGL, EC 4.4.1.11) to directly degrade SAA to alpha-keto acids, ammonia, and volatile thiols. The reaction mechanisms and the physiological roles of this enzyme are partially demonstrated by the enzymological analyzes, structure determination, isotopic labeling of the intermediate metabolites, and functional analyzes of deficient mutants. MGL has been exploited as a drug target for the infectious diseases caused by parasitic protozoa and anaerobic periodontal bacteria. In addition, MGL has been utilized to develop therapeutic interventions of various cancers, by introducing recombinant proteins to deplete methionine essential for the growth of cancer cells. In this review, we discuss the current understanding of enzymological properties, putative physiological roles, and therapeutic applications of MGL.

摘要

含硫氨基酸(SAAs)是许多生物过程的必需组成部分,广泛分布于所有生物体中。SAAs 的生物合成和分解代谢途径在生物体之间和发育阶段之间存在差异,并受环境变化的调节。从古菌到植物的有限生物谱系,但人类没有,拥有一种独特的酶——甲硫氨酸γ-裂解酶(MGL,EC 4.4.1.11),可将 SAA 直接降解为α-酮酸、氨和挥发性硫醇。通过酶学分析、中间代谢物的同位素标记和功能缺失突变体的功能分析,部分揭示了该酶的反应机制和生理作用。MGL 已被用作寄生虫原生动物和厌氧牙周细菌引起的传染病的药物靶点。此外,MGL 已被用于开发各种癌症的治疗干预措施,通过引入重组蛋白来耗尽癌细胞生长所必需的蛋氨酸。在这篇综述中,我们讨论了对 MGL 的酶学特性、假定的生理作用和治疗应用的现有理解。

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