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利用 NanoBRET 技术在活细胞中对 E3:PROTAC:靶标三元复合物进行动力学检测。

Kinetic Detection of E3:PROTAC:Target Ternary Complexes Using NanoBRET Technology in Live Cells.

机构信息

Promega Corporation, Fitchburg, WI, USA.

出版信息

Methods Mol Biol. 2021;2365:151-171. doi: 10.1007/978-1-0716-1665-9_8.

Abstract

Heterobifunctional small-molecule degraders known as Proteolysis Targeting Chimeras (PROTACs) serve as a chemical bridge bringing into direct association a target protein with an active E3 ligase complex, called the ternary complex, to facilitate targeted protein degradation. This ternary complex formation is the first key mechanistic step in a cascade of events that results in ubiquitination and subsequent degradation of the target protein via the ubiquitin-proteasome pathway. The ternary complex, however, is a nonnative cellular complex; therefore, PROTAC compound design has many challenges to overcome to ensure successful formation, including achieving structural and electrostatic favorability among target and ligase. Due to these challenges, finding successful PROTACs typically requires testing of extensive libraries of heterobifunctional compounds with varying linkers and E3 handles. As PROTAC ternary complex formation is also critically dependent on cellular context, live cell assays and technologies for rapid and robust screening are highly enabling for triaging of early stage compounds. Here, we present cellular assays utilizing NanoBRET technology for the study of ternary complexes, showing examples with two most popular PROTAC E3 ligase components, VHL (von Hippel-Lindau disease tumor suppressor) and CRBN (Cereblon). These assays can be run in either endpoint or real-time kinetic formats, are compatible with high-throughput workflows, and provide insight into how altering the PROTAC chemical composition affects the formation and stability of the ternary complex in live cells.

摘要

异双功能小分子降解剂,称为蛋白水解靶向嵌合体(PROTACs),作为一种化学桥梁,将靶蛋白与活性 E3 连接酶复合物直接联系起来,形成三元复合物,以促进靶蛋白的降解。这种三元复合物的形成是一系列事件的第一个关键机制步骤,导致靶蛋白通过泛素蛋白酶体途径发生泛素化和随后的降解。然而,三元复合物是一种非天然的细胞复合物;因此,PROTAC 化合物的设计有许多挑战需要克服,以确保成功形成,包括在靶标和连接酶之间实现结构和静电有利性。由于这些挑战,找到成功的 PROTACs 通常需要测试具有不同接头和 E3 接头的大量异双功能化合物文库。由于 PROTAC 三元复合物的形成也严重依赖于细胞环境,因此用于快速和稳健筛选的活细胞测定和技术对于早期化合物的分类非常有利。在这里,我们展示了利用 NanoBRET 技术研究三元复合物的细胞测定,展示了两个最受欢迎的 PROTAC E3 连接酶组件,VHL(von Hippel-Lindau 疾病肿瘤抑制因子)和 CRBN(Cereblon)的例子。这些测定可以在终点或实时动力学格式下运行,与高通量工作流程兼容,并深入了解改变 PROTAC 化学组成如何影响三元复合物在活细胞中的形成和稳定性。

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