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非酶糖基化(NEG)中活性羰基化合物(RCS)与效应试剂的试剂多样性和非共价结合的观点:机理考量及对未来研究的启示

A Perspective on Reagent Diversity and Non-covalent Binding of Reactive Carbonyl Species (RCS) and Effector Reagents in Non-enzymatic Glycation (NEG): Mechanistic Considerations and Implications for Future Research.

作者信息

Rodnick Kenneth J, Holman R W, Ropski Pamela S, Huang Mingdong, Swislocki Arthur L M

机构信息

Department of Biological Sciences, Idaho State UniversityPocatello, ID, United States.

Department of Chemistry, Idaho State UniversityPocatello, ID, United States.

出版信息

Front Chem. 2017 Jun 30;5:39. doi: 10.3389/fchem.2017.00039. eCollection 2017.

Abstract

This perspective focuses on illustrating the underappreciated connections between reactive carbonyl species (RCS), initial binding in the nonenzymatic glycation (NEG) process, and nonenzymatic covalent protein modification (here termed NECPM). While glucose is the central species involved in NEG, recent studies indicate that the initially-bound glucose species in the NEG of human hemoglobin (HbA) and human serum albumin (HSA) are non-RCS ring-closed isomers. The ring-opened glucose, an RCS structure that reacts in the NEG process, is most likely generated from previously-bound ring-closed isomers undergoing concerted acid/base reactions while bound to protein. The generation of the glucose RCS can involve concomitantly-bound physiological species (e.g., inorganic phosphate, water, etc.); here termed effector reagents. Extant NEG schemes do not account for these recent findings. In addition, effector reagent reactions with glucose in the serum and erythrocyte cytosol can generate RCS (e.g., glyoxal, glyceraldehyde, etc.). Recent research has shown that these RCS covalently modify proteins via NECPM mechanisms. A general scheme that reflects both the reagent and mechanistic diversity that can lead to NEG and NECPM is presented here. A perspective that accounts for the relationships between RCS, NEG, and NECPM can facilitate the understanding of site selectivity, may help explain overall glycation rates, and may have implications for the clinical assessment/control of diabetes mellitus. In view of this perspective, concentrations of ribose, fructose, Pi, bicarbonate, counter ions, and the resulting RCS generated within intracellular and extracellular compartments may be of importance and of clinical relevance. Future research is also proposed.

摘要

本文观点聚焦于阐明反应性羰基化合物(RCS)、非酶糖基化(NEG)过程中的初始结合以及非酶共价蛋白修饰(此处称为NECPM)之间未得到充分认识的联系。虽然葡萄糖是参与NEG的核心物质,但最近的研究表明,人血红蛋白(HbA)和人血清白蛋白(HSA)的NEG中最初结合的葡萄糖物质是非RCS环闭异构体。开环葡萄糖是一种在NEG过程中发生反应的RCS结构,很可能是由先前结合的环闭异构体在与蛋白质结合时发生协同酸碱反应产生的。葡萄糖RCS的产生可能涉及同时结合的生理物质(如无机磷酸盐、水等);此处称为效应试剂。现有的NEG方案并未考虑这些最新发现。此外,效应试剂在血清和红细胞胞质溶胶中与葡萄糖的反应可生成RCS(如乙二醛、甘油醛等)。最近的研究表明,这些RCS通过NECPM机制共价修饰蛋白质。本文提出了一个反映可导致NEG和NECPM的试剂和机制多样性的通用方案。一个解释RCS、NEG和NECPM之间关系的观点有助于理解位点选择性,可能有助于解释总体糖基化速率,并可能对糖尿病的临床评估/控制产生影响。鉴于此观点,核糖、果糖、磷酸、碳酸氢盐、抗衡离子的浓度以及细胞内和细胞外区室中产生的RCS可能具有重要意义和临床相关性。还提出了未来的研究方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/763a/5491550/3faf61f29586/fchem-05-00039-g0001.jpg

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