Proteolytic 'defences' and the accumulation of oxidized polypeptides in cataractogenesis and atherogenesis.

Roger T Dean, Rachael Dunlop, Peter Hume, Ken J Rodgers
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引用次数: 13

Abstract

Over the last few years, it has been clearly established that normal plasma contains low levels of oxidized polypeptides, and that these accumulate in tissues during several age-related pathologies. In contrast, normal mammalian aging, contrary to conventional dogma, is not clearly associated with enhanced levels of oxidized proteins, except in extracellular connective tissues, whose proteins can, for example, be oxidized by the neutrophil oxidative burst. Since mildly oxidized proteins are susceptible to accelerated degradation in most experimental systems, the question arises as to how the accumulation of oxidized proteins can take place. Such accumulation requires an excess of production (or deposition) over removal, which might reflect alterations in capacity or rate of production or removal. This chapter discusses our presently limited knowledge of rates and control of proteolysis of oxidized proteins in two pathologies, cataractogenesis and atherogenesis. It commences with a brief summary of current understanding of the mechanisms of protein oxidation, and of the observed accumulation of oxidized proteins in several pathologies.

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蛋白水解“防御”和氧化多肽在白内障发生和动脉粥样硬化中的积累。
在过去的几年中,已经明确地确定正常血浆中含有低水平的氧化多肽,并且这些多肽在几种与年龄相关的病理组织中积累。相反,与传统观点相反,正常哺乳动物的衰老与氧化蛋白水平的提高并没有明显的联系,但细胞外结缔组织除外,例如,细胞外结缔组织的蛋白质可以被中性粒细胞氧化爆发氧化。由于在大多数实验系统中,轻度氧化蛋白容易加速降解,因此产生了氧化蛋白如何积累的问题。这种积累要求生产(或沉积)超过清除,这可能反映了生产或清除能力或速度的变化。本章讨论了我们目前有限的知识速率和控制蛋白水解的氧化蛋白在两种病理,白内障发生和动脉粥样硬化。它首先简要总结了目前对蛋白质氧化机制的理解,以及在几种病理中观察到的氧化蛋白质积累。
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