首页> 外文期刊>Turkish journal of chemistry >Protein Quality Control by the Ubiquitin Proteolytic Pathway:Roles in Resistance to Oxidative Stress and Disease
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Protein Quality Control by the Ubiquitin Proteolytic Pathway:Roles in Resistance to Oxidative Stress and Disease

机译:泛素蛋白水解途径控制蛋白质质量:抗氧化应激和疾病的作用

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There is now consensus that the accumulation of oxidatively modified proteins is cytotoxic and causally related to several age-related diseases including the amyloid diseases and age-related cataracts.There is also general agreement that the ubiquitin proteolytic pathway(UPP)provides a quality control mechanism to limit accumulation of modified proteins.We asked if and how oxidative stress is related to the function of the ubiquitin proteolytic pathway,and vice versa,with the objective of obtaining information that can lead to the development of strategies to delay age-related"amyloid"or"protein precipitation"diseases such as cataracts and age-related macular degeneration.Elevated levels of ubiquitin conjugates were observed when human,rabbit,bovine,and rat lens,retina,liver cells or tissues were exposed to mild oxidative stress,which was created by exposure to paraquat,diamide,peroxide,light together with lipofuscin,and radiomimetic drugs.The increase in ubiquitin conjugates derived from an increase in substrates as well as by hyperactivation of E1,rather than inactivation of the proteasome.Using a novel glutathiolated substrate,gamma C-crystallin,we demonstrated that the UPP shows a previously unrecognized selectivity for such specifically oxidatively modified proteins.Selectivity of the pathway for other oxidatively modified proteins,specifically for protein carbonyls,was indicated in assays that employed the ubiquitin conjugation-competent,but degradation-resistant ubiquitin variant K6W-ubiquitin.These experiments showed that failure to execute ubiquitin-dependent proteolysis renders cells more susceptible to oxidative-stress-related cytotoxicity.Activity of the pathway is regulated in part by cellular redox status,specifically as affected by GSSG.Ubiquitination is enhanced when GSSG/GSH ratios are 0.02-0.15.Since there is potentiation of ubiquitination even when GSSG/GSH ratios are indistinguishable from basal levels,it appears that ubiquitination provides one of the most sensitive indicators of oxidative stress.Ubiquitination is attenuated when GSSG/GSH rises>0.2 and does not occur when GSSG/GSH>2.9.The data indicate that inhibition of the pathway,which occurs upon aging,is associated with accumulation rather than the timely degradation of ubiquitin conjugates.They further suggest that if the system fails to keep up with production of substrates,high mass ubiquitin conjugates may accumulate and precipitate in cytotoxic aggregates such as are seen in many age-related syndromes,including lens cataracts or in lipofuscin and drusen in the aging retina.
机译:现已达成共识,氧化修饰蛋白的积累具有细胞毒性,并且与几种与年龄相关的疾病(包括淀粉样蛋白疾病和与年龄相关的白内障)有因果关系。也普遍认为泛素蛋白水解途径(UPP)提供了质量控制机制。以限制氧化应激与泛素蛋白水解途径的功能有关,以及氧化应激如何与之相关,反之亦然,目的是获得可导致延缓与年龄有关的“淀粉样蛋白”策略的信息。当人,兔,牛和大鼠晶状体,视网膜,肝细胞或组织暴露于轻度的氧化应激时,观察到“泛素结合物”水平升高,例如白内障和与年龄有关的黄斑变性。暴露于百草枯,二酰胺,过氧化物,光以及脂褐素和放射模拟药物产生的。泛素结合物的增加利用底物的增加以及E1的过度活化而不是蛋白酶体的失活。使用新型的谷氨硫酰化底物γC-晶状体蛋白,我们证明了UPP对这种经过特殊氧化修饰的蛋白质表现出先前无法识别的选择性。在采用具有泛素缀合能力但抗降解的泛素变体K6W-泛素的测定中表明了其他氧化修饰蛋白(特别是蛋白羰基)的途径。这些实验表明,无法进行泛素依赖性蛋白水解使细胞更易感对氧化应激相关的细胞毒性。该途径的活性部分受细胞氧化还原状态的调节,特别是受GSSG的影响。当GSSG / GSH比率为0.02-0.15时,泛素化会增强。因为即使GSSG / GSH比值与基础水平没有区别,泛素化似乎提供了一个氧化应激最敏感的指标之一。当GSSG / GSH升高> 0.2时泛素化减弱,而当GSSG / GSH> 2.9时泛素化不发生。数据表明,衰老时发生的该途径抑制与积累有关,而不是与积累有关。他们进一步表明,如果系统无法跟上底物的产生,大量的泛素结合物可能会在细胞毒性聚集物中积聚和沉淀,例如在许多与年龄相关的综合症中,包括晶状体白内障或视网膜中的脂褐素和玻璃膜疣。

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