From the Chemical Biology Program and.
Departments of Radiology and.
J Biol Chem. 2019 Feb 8;294(6):2162-2179. doi: 10.1074/jbc.REV118.002811. Epub 2018 Nov 8.
The chaperome is the collection of proteins in the cell that carry out molecular chaperoning functions. Changes in the interaction strength between chaperome proteins lead to an assembly that is functionally and structurally distinct from each constituent member. In this review, we discuss the epichaperome, the cellular network that forms when the chaperome components of distinct chaperome machineries come together as stable, functionally integrated, multimeric complexes. In tumors, maintenance of the epichaperome network is vital for tumor survival, rendering them vulnerable to therapeutic interventions that target critical epichaperome network components. We discuss how the epichaperome empowers an approach for precision medicine cancer trials where a new target, biomarker, and relevant drug candidates can be correlated and integrated. We introduce chemical biology methods to investigate the heterogeneity of the chaperome in a given cellular context. Lastly, we discuss how ligand-protein binding kinetics are more appropriate than equilibrium binding parameters to characterize and unravel chaperome targeting in cancer and to gauge the selectivity of ligands for specific tumor-associated chaperome pools.
伴侣蛋白组是细胞中执行分子伴侣功能的蛋白质集合。伴侣蛋白之间相互作用强度的变化会导致组装体具有与组成成员不同的功能和结构。在这篇综述中,我们讨论了表观伴侣蛋白组,即当不同伴侣蛋白机器的伴侣蛋白成分聚集在一起形成稳定、功能整合的多聚复合物时形成的细胞网络。在肿瘤中,维持表观伴侣蛋白组网络对于肿瘤的存活至关重要,这使得它们容易受到针对关键表观伴侣蛋白组网络成分的治疗干预。我们讨论了表观伴侣蛋白组如何为精准医学癌症试验提供一种方法,其中可以将新的靶标、生物标志物和相关药物候选物相关联并整合。我们介绍了化学生物学方法来研究给定细胞环境中伴侣蛋白组的异质性。最后,我们讨论了配体-蛋白结合动力学如何比平衡结合参数更适合用于描述和揭示癌症中的伴侣蛋白组靶向,并评估配体对特定肿瘤相关伴侣蛋白组库的选择性。