Zhou Chen, Zhang Chi, Zhu Hongwen, Liu Zhijun, Su Haixia, Zhang Xianglei, Chen Tingting, Zhong Yan, Hu Huifang, Xiong Muya, Zhou Hu, Xu Yechun, Zhang Ao, Zhang Naixia
Department of Analytical Chemistry, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, 555 Zu Chong Zhi Road, Shanghai 201203, China.
CAS Key Laboratory of Receptor Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai 201203, China.
iScience. 2020 Feb 21;23(2):100857. doi: 10.1016/j.isci.2020.100857. Epub 2020 Jan 21.
Hsp90 is a target for anti-cancer drug development. Both the conformational events tuned by ATP/ADP and co-chaperones and the chaperoning cycle timing are required for Hsp90's fully functional display. Interfering with either one of the conformational events or the cycle timing will down-regulate Hsp90's function. In this manuscript, non-covalent allosteric modulators (SOMCL-16-171 and SOMCL-16-175) targeting Hsp90α's middle domain (Hsp90M) were developed for the first time. Multiple techniques were then applied to characterize the interactions between two active compounds and Hsp90α. Two loops and one α-helix (F349-N360, K443-E451, and D372-G387) in Hsp90M were identified responsible for the recognition of SOMCL-16-171 and SOMCL-16-175. Meanwhile, the binding of SOMCL-16-171 and SOMCL-16-175 to Hsp90M was demonstrated to allosterically modulate the structure and function of Hsp90α's N-terminal domain. Finally, cellular assays were conducted to evaluate the cellular activity of SOMCL-16-175, and the results indicate that SOMCL-16-175 destabilizes Hsp90's client proteins and reduces cell viability.
热休克蛋白90(Hsp90)是抗癌药物开发的一个靶点。由三磷酸腺苷/二磷酸腺苷(ATP/ADP)和共伴侣蛋白调节的构象事件以及伴侣循环的时间对于Hsp90的完全功能发挥都是必需的。干扰构象事件或循环时间中的任何一个都会下调Hsp90的功能。在本论文中,首次开发了靶向Hsp90α中间结构域(Hsp90M)的非共价变构调节剂(SOMCL-16-171和SOMCL-16-175)。然后应用多种技术来表征两种活性化合物与Hsp90α之间的相互作用。确定Hsp90M中的两个环和一个α螺旋(F349-N360、K443-E451和D372-G387)负责识别SOMCL-16-171和SOMCL-16-175。同时,已证明SOMCL-16-171和SOMCL-16-175与Hsp90M的结合可别构调节Hsp90α N端结构域的结构和功能。最后,进行细胞试验以评估SOMCL-16-175的细胞活性,结果表明SOMCL-16-175使Hsp90的客户蛋白不稳定并降低细胞活力。