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Chemical and Biological Approaches for Adapting Proteostasis to Ameliorate Protein Misfolding and Aggregation Diseases–Progress and Prognosis

机译:化学和生物学方法使蛋白质稳态适应改善蛋白错误折叠和聚集疾病的进展和预后。

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摘要

Maintaining the proteome to preserve the health of an organism in the face of developmental changes, environmental insults, infectious diseases, and rigors of aging is a formidable task. The challenge is magnified by the inheritance of mutations that render individual proteins subject to misfolding and/or aggregation. Maintenance of the proteome requires the orchestration of protein synthesis, folding, degradation, and trafficking by highly conserved/deeply integrated cellular networks. In humans, no less than 2000 genes are involved. Stress sensors detect the misfolding and aggregation of proteins in specific organelles and respond by activating stress-responsive signaling pathways. These culminate in transcriptional and posttranscriptional programs that up-regulate the homeostatic mechanisms unique to that organelle. Proteostasis is also strongly influenced by the general properties of protein folding that are intrinsic to every proteome. These include the kinetics and thermodynamics of the folding, misfolding, and aggregation of individual proteins. We examine a growing body of evidence establishing that when cellular proteostasis goes awry, it can be reestablished by deliberate chemical and biological interventions. We start with approaches that employ chemicals or biological agents to enhance the general capacity of the proteostasis network. We then introduce chemical approaches to prevent the misfolding or aggregation of specific proteins through direct binding interactions. We finish with evidence that synergy is achieved with the combination of mechanistically distinct approaches to reestablish organismal proteostasis.
机译:面对发展变化,环境侵害,传染病和严峻的老化,维持蛋白质组以维护生物体的健康是一项艰巨的任务。突变的遗传使挑战更加严峻,突变使单个蛋白质容易发生错误折叠和/或聚集。蛋白质组的维护需要通过高度保守/高度整合的细胞网络来协调蛋白质的合成,折叠,降解和运输。在人类中,涉及的基因不少于2000个。压力传感器检测特定细胞器中蛋白质的错误折叠和聚集,并通过激活压力响应信号通路来响应。这些最终达到转录和转录后程序,该程序上调该细胞器特有的体内平衡机制。蛋白质变形还受到每个蛋白质组固有的蛋白质折叠的一般特性的强烈影响。这些包括单个蛋白质折叠,错误折叠和聚集的动力学和热力学。我们研究了越来越多的证据,这些证据表明,当细胞蛋白变形失常时,可以通过有意的化学和生物干预来重建它。我们从采用化学药品或生物制剂来增强蛋白质稳定网络的一般能力的方法开始。然后,我们介绍化学方法,以通过直接结合相互作用防止特定蛋白质的错误折叠或聚集。我们获得的证据表明,通过机械上独特的方法相结合来重建机体蛋白稳态,可以实现协同作用。

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