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首页> 外文期刊>Current Topics in Medicinal Chemistry >Structural and Computational Biology of the Molecular Chaperone Hsp90: From Understanding Molecular Mechanisms to Computer-Based Inhibitor Design
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Structural and Computational Biology of the Molecular Chaperone Hsp90: From Understanding Molecular Mechanisms to Computer-Based Inhibitor Design

机译:分子伴侣Hsp90的结构和计算生物学:从了解分子机理到基于计算机的抑制剂设计。

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The molecular chaperone Hsp90 (90 kDa heat-shock protein) mediates many fundamental cellular pathways involved in cell proliferation, cell survival, and cellular stress response. Hsp90 is responsible for the correct conformational development, stability and function in crowded cell environments. Structural and computational biology studies have recently provided important insights into underlying molecular mechanisms of Hsp90 function. These developments have revealed a critical role of Hsp90 structure, conformational dynamics and interdomain communication in promoting the binding and release of ligands and its interaction with client proteins. By disabling multiple signal transduction pathways, Hsp90 inhibition provides a powerful therapeutic strategy in cancer research, which is selective for specific cancer mechanisms, yet broadly applicable to disparate tumors with different genetic signatures. Herein, we review the recent developments in structural and computational studies of Hsp90 function and binding, with the emphasis on progress towards computational structure-based discovery and design of Hsp90 inhibitors. We also review the emerging insights from computational and structure-based approaches to develop anticancer therapies that can target novel allosteric binding sites and Hsp90 interactions with co-chaperones and client proteins. Structural and computational biology studies can provide a foundation for the design of Hsp90 modulators capable of regulating functional protein motions linked to biological activities. We highlight current challenges in translating molecular mechanisms of the molecular chaperone into therapeutic strategies and outline future directions for the computer-based design of Hsp90 inhibitors.
机译:分子伴侣Hsp90(90 kDa热休克蛋白)介导许多基本细胞途径,参与细胞增殖,细胞存活和细胞应激反应。 Hsp90负责在拥挤的细胞环境中正确的构象发育,稳定性和功能。最近,结构和计算生物学研究为Hsp90功能的潜在分子机制提供了重要见识。这些进展揭示了Hsp90结构,构象动力学和域间通讯在促进配体的结合和释放以及与客体蛋白的相互作用中的关键作用。通过禁用多种信号转导途径,Hsp90抑制在癌症研究中提供了强大的治疗策略,对特定的癌症机制具有选择性,但广泛适用于具有不同遗传特征的不同肿瘤。本文中,我们回顾了Hsp90功能和结合的结构和计算研究的最新进展,重点放在了基于计算结构的Hsp90抑制剂的发现和设计上。我们还回顾了基于计算和基于结构的方法的新兴见解,以开发可靶向新型变构结合位点以及与伴侣蛋白和客户蛋白相互作用的Hsp90的抗癌疗法。结构和计算生物学研究可以为设计Hsp90调节剂提供基础,该调节剂能够调节与生物学活性相关的功能蛋白运动。我们重点介绍了将分子伴侣分子的分子机制转化为治疗策略的当前挑战,并概述了基于计算机的Hsp90抑制剂设计的未来方向。

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