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Spatial regulation of coalesced protein assemblies: Lessons from yeast to diseases

机译:结合蛋白质组件的空间调节:酵母患者对疾病的课程

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摘要

Organisms rely on correctly folded proteins to carry out essential functions. Proteinquality controlfactors guard proteostasis and prevent protein misfolding. When quality control fails and in response to diverse stresses, many proteins start to accumulate at specific deposit sites that maintain cellular organization andprotect the functionality of coalescing proteins. These transitions involve dedicated proteins that promote coalescence and are facilitated by endo-membranes and cytoskeletal platforms. Moreover, several proteins make use of weak multivalent interactions or conformational templating to drive the formation of large-scale assemblies. Formation of such assemblies is often associated with a change in biochemical activity that can be used by cells to execute biochemical decisions in a localized manner during development and adaption. Since all assembly types impact cell physiology, their localization and dynamics need to be tightly regulated. Interestingly, at least some of the regulatory mechanisms are shared by functional membrane-less organelles and assemblies of terminally aggregated proteins. Furthermore, constituents of functional assemblies can aggregate and become non-functional during aging. Here we present the current knowledge as to how coalescing protein assemblies are spatially organized in cells and we postulate that failures in their spatial confinement might underscore certain aspects of aging and neurodegenerative diseases.
机译:生物体依靠正确折叠的蛋白质来执行基本功能。蛋白质质量控制因子保护蛋白质稳定,防止蛋白质错误折叠。当质量控制失败并对不同的压力做出反应时,许多蛋白质开始在特定的沉积点聚集,以维持细胞组织并保护凝聚蛋白质的功能。这些转变涉及促进融合的专用蛋白质,并由内膜和细胞骨架平台促进。此外,一些蛋白质利用弱多价相互作用或构象模板来驱动大规模组装的形成。这种组装体的形成通常与生物化学活性的变化有关,细胞可利用生物化学活性在发育和适应过程中以局部方式执行生物化学决策。由于所有装配类型都会影响细胞生理学,因此它们的定位和动力学需要严格控制。有趣的是,至少有一些调控机制是由功能性无膜细胞器和末端聚集蛋白质的组装体共享的。此外,功能性组件的成分在老化过程中会聚集并变得无功能。在这里,我们介绍了细胞中聚结蛋白组装体如何在空间上组织的最新知识,并假设其空间限制的失败可能会强调衰老和神经退行性疾病的某些方面。

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  • 来源
    《Prion》 |2017年第3期|共12页
  • 作者单位

    Swiss Fed Inst Technol Inst Biochem Zurich Switzerland;

    Kings Coll London Randall Div Cell &

    Mol Biophys London England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 基础医学;
  • 关键词

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