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Rationally Designed Variants of α-Synuclein Illuminate Its in vivo Structural Properties in Health and Disease

机译:合理设计的α-突触核蛋白变体阐明其在健康和疾病中的体内结构特性

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摘要

α-Synuclein (αS) is a conserved and abundant neuronal protein with unusual structural properties. It appears to partition between folded and unstructured states as well as between membrane-bound and aqueously soluble states. In addition, a switch between monomeric and tetrameric/multimeric states has been observed recently. The precise composition, localization and abundance of the multimeric species are under study and remain unsettled. Yet to interfere with disease pathogenesis, we must dissect how small changes in αS homeostasis may give rise to Parkinson’s disease (PD), dementia with Lewy bodies (DLB) and other human synucleinopathies. Rationally designed αS point mutations that prevent the protein from populating all states within its normal folding repertoire have continued to be instrumental in bringing new insights into its biochemistry in vivo. This review summarizes biochemical and cell biological findings about αS homeostasis from different labs, with a special emphasis on intact-cell approaches that may preserve the complex, metastable native states of αS.
机译:α-突触核蛋白(αS)是一种保守且丰富的神经元蛋白,具有异常的结构特性。它似乎在折叠状态和非结构状态之间以及在膜结合状态和水溶性状态之间分配。另外,最近已经观察到单体状态与四聚体/多聚体状态之间的转换。多聚体种类的精确组成,定位和丰富度仍在研究中,尚未解决。然而,为了干扰疾病的发病机理,我们必须剖析αS稳态的微小变化可能导致帕金森氏病(PD),路易体痴呆(DLB)和其他人的突触核病。合理设计的αS点突变可阻止蛋白质在其正常折叠库中的所有状态中起作用,这继续在为体内生物化学带来新见解方面发挥了作用。这篇综述总结了来自不同实验室的关于αS稳态的生化和细胞生物学发现,特别强调了完整细胞方法,这些方法可以保留αS的复杂,亚稳定的天然状态。

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