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Chemical Biology Framework to Illuminate Proteostasis.
Annual Review of Biochemistry ( IF 12.1 ) Pub Date : 2020-06-22 , DOI: 10.1146/annurev-biochem-013118-111552
Rebecca M Sebastian 1 , Matthew D Shoulders 1
Affiliation  

Protein folding in the cell is mediated by an extensive network of >1,000 chaperones, quality control factors, and trafficking mechanisms collectively termed the proteostasis network. While the components and organization of this network are generally well established, our understanding of how protein-folding problems are identified, how the network components integrate to successfully address challenges, and what types of biophysical issues each proteostasis network component is capable of addressing remains immature. We describe a chemical biology–informed framework for studying cellular proteostasis that relies on selection of interesting protein-folding problems and precise researcher control of proteostasis network composition and activities. By combining these methods with multifaceted strategies to monitor protein folding, degradation, trafficking, and aggregation in cells, researchers continue to rapidly generate new insights into cellular proteostasis.

中文翻译:


阐明蛋白质稳定的化学生物学框架。

细胞中的蛋白质折叠由> 1,000个分子伴侣,质量控制因子和统称为蛋白稳定网络的运输机制组成的广泛网络介导。虽然通常已经很好地确定了该网络的组件和组织,但是我们对如何识别蛋白质折叠问题,如何将网络组件集成以成功应对挑战以及每个变形蛋白网络组件能够解决哪些类型的生物物理问题的理解仍不成熟。我们描述了一种基于化学生物学的框架,用于研究细胞蛋白变性,该框架依赖于对有趣的蛋白质折叠问题的选择以及对蛋白变性网络组成和活动的精确研究人员控制。通过将这些方法与多方面的策略结合起来,以监控蛋白质折叠,降解,

更新日期:2020-06-23
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