首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Cross-functional E3 ligases Parkin and C-terminus Hsp70-interacting protein in neurodegenerative disorders.
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Cross-functional E3 ligases Parkin and C-terminus Hsp70-interacting protein in neurodegenerative disorders.

机译:神经退行性疾病中的跨功能E3连接酶Parkin和C末端Hsp70相互作用蛋白。

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摘要

The study of neurodegenerative disorders has had a major impact on our understanding of more fundamental mechanisms underlying neurobiology. Breakthroughs in the genetics of Alzheimer's (AD) and Parkinson's diseases (PD) has resulted in new knowledge in the areas of axonal transport, energy metabolism, protein trafficking/clearance and synaptic physiology. The major neurodegenerative diseases have in common a regional or network pathology associated with abnormal protein accumulation(s) and various degrees of motor or cognitive decline. In AD, β-amyloids are deposited in extracellular diffuse and compacted plaques as well as intracellularly. There is a major contribution to the disease by the co-existence of an intraneuronal tauopathy. Additionally, PD-like Lewy Bodies (LBs) bearing aggregated α-synuclein is present in 40-60% of all AD cases, especially involving amygdala. Amyloid deposits can be degraded or cleared by several mechanisms, including immune-mediated and transcytosis across the blood-brain barrier. Another avenue for disposal involves the lysosome pathway via autophagy. Enzymatic pathways include insulin degradative enzyme and neprilysin. Finally, the co-operative actions of C-terminus Hsp70 interacting protein (CHIP) and Parkin, components of a multiprotein E3 ubiquitin ligase complex, may be a portal to proteasome-mediated degradation. Mutations in the Parkin gene are the most common genetic link to autosomal recessive Parkinson's disease. Parkin catalyzes the post-translational modification of proteins with polyubiquitin, targeting them to the 26S proteasome. Parkin reduces intracellular Aβ(1-42) peptide levels, counteracts its effects on cell death, and reverses its effect to inhibit the proteasome. Additionally, Parkin has intrinsic cytoprotective activity to promote proteasome function and defend against oxidative stress to mitochondria. Parkin and CHIP are also active in amyloid clearance and cytoprotection in vivo. Parkin has cross-functionality in additional neurodegenerative diseases, for instance, to eliminate polyglutamine-expanded proteins, reducing their aggregation and toxicity and reinstate proteasome function. The dual actions of CHIP (molecular co-chaperone and E3 ligase) and Parkin (as E3-ubiquitin ligase and anti-oxidant) may also play a role in suppressing inflammatory reactions in animal models of neurodegeneration. In this review, we focus on the significance of CHIP and Parkin as inducers of amyloid clearance, as cytoprotectants and in the suppression of reactive inflammation. A case is made for more effort to explore whether neurodegeneration associated with proteinopathies can be arrested at early stages by promoting their mutual action.
机译:神经退行性疾病的研究对我们对神经生物学基础机制的理解产生了重大影响。阿尔茨海默氏病(AD)和帕金森氏病(PD)的遗传学突破取得了有关轴突运输,能量代谢,蛋白质运输/清除和突触生理学领域的新知识。主要的神经退行性疾病具有与异常蛋白质积聚和各种程度的运动或认知下降有关的区域或网络病理。在AD中,β-淀粉样蛋白沉积在细胞外弥散和压实的斑块以及细胞内。神经元内tauopathy的并存对该疾病有重大贡献。另外,在所有AD病例中,尤其是涉及杏仁核的AD病例中,存在带有聚集的α-突触核蛋白的PD样路易体(LB)。淀粉样蛋白沉积物可以通过多种机制降解或清除,包括免疫介导的和跨血脑屏障的转胞吞作用。另一个处置途径涉及通过自噬的溶酶体途径。酶促途径包括胰岛素降解酶和中性溶酶。最后,C末端Hsp70相互作用蛋白(CHIP)和Parkin(多蛋白E3泛素连接酶复合物的组成部分)的协同作用可能是蛋白酶体介导的降解的门户。帕金基因的突变是常染色体隐性帕金森氏病的最常见遗传联系。 Parkin可以用多聚泛素催化蛋白质的翻译后修饰,将其靶向26S蛋白酶体。 Parkin降低细胞内Aβ(1-42)肽水平,抵消其对细胞死亡的影响,并逆转其抑制蛋白酶体的作用。另外,帕金具有固有的细胞保护活性,以促进蛋白酶体功能并防御线粒体的氧化应激。 Parkin和CHIP在体内淀粉样蛋白清除和细胞保护方面也具有活性。帕金在其他神经退行性疾病中具有交叉功能,例如,消除聚谷氨酰胺扩展的蛋白质,减少其聚集和毒性以及恢复蛋白酶体功能。 CHIP(分子伴侣蛋白和E3连接酶)和Parkin(作为E3-泛素连接酶和抗氧化剂)的双重作用也可能在神经退行性动物模型中抑制炎症反应。在这篇综述中,我们集中于CHIP和帕金作为淀粉样蛋白清除诱导剂,细胞保护剂和抑制反应性炎症的意义。需要作出更多的努力来探索与蛋白病相关的神经退行性变是否可以通过促进它们的相互作用而在早期阶段被阻止。

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