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PIKES 分析揭示了降解物反应和 CRL4 网络关键调节机制。

PIKES Analysis Reveals Response to Degraders and Key Regulatory Mechanisms of the CRL4 Network.

机构信息

Division of Biology and Biological Engineering, California Institute of Technology, 1200 E California Blvd., Pasadena, CA 91125, USA; Genentech, 1 DNA Way, South San Francisco, 94080 CA, USA.

Max Plank Institute for Dynamics of Complex Technical Systems, Sandtorstr. 1, 39106 Magdeburg, Germany; Bristol-Myers Squibb, 3551 Lawrenceville Princeton Rd, Lawrence Township, NJ 08648, USA.

出版信息

Mol Cell. 2020 Mar 5;77(5):1092-1106.e9. doi: 10.1016/j.molcel.2019.12.013. Epub 2020 Jan 20.

Abstract

Co-opting Cullin4 RING ubiquitin ligases (CRL4s) to inducibly degrade pathogenic proteins is emerging as a promising therapeutic strategy. Despite intense efforts to rationally design degrader molecules that co-opt CRL4s, much about the organization and regulation of these ligases remains elusive. Here, we establish protein interaction kinetics and estimation of stoichiometries (PIKES) analysis, a systematic proteomic profiling platform that integrates cellular engineering, affinity purification, chemical stabilization, and quantitative mass spectrometry to investigate the dynamics of interchangeable multiprotein complexes. Using PIKES, we show that ligase assemblies of Cullin4 with individual substrate receptors differ in abundance by up to 200-fold and that Cand1/2 act as substrate receptor exchange factors. Furthermore, degrader molecules can induce the assembly of their cognate CRL4, and higher expression of the associated substrate receptor enhances degrader potency. Beyond the CRL4 network, we show how PIKES can reveal systems level biochemistry for cellular protein networks important to drug development.

摘要

招募 Cullin4 RING 泛素连接酶 (CRL4s) 来诱导降解致病蛋白,这正在成为一种很有前途的治疗策略。尽管人们付出了巨大努力来合理设计招募 CRL4 的降解分子,但这些连接酶的组织和调控仍难以捉摸。在这里,我们建立了蛋白相互作用动力学和估计化学计量学(PIKES)分析,这是一种系统的蛋白质组学分析平台,它集成了细胞工程、亲和纯化、化学稳定化和定量质谱分析,以研究可互换的多蛋白复合物的动力学。利用 PIKES,我们表明,单个底物受体的 Cullin4 连接酶组装体的丰度差异可达 200 倍,并且 Cand1/2 作为底物受体交换因子。此外,降解分子可以诱导其同源 CRL4 的组装,并且相关底物受体的更高表达会增强降解剂的效力。在 CRL4 网络之外,我们展示了 PIKES 如何揭示细胞蛋白质网络的系统水平生物化学,这对于药物开发很重要。

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