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使用HiBiT CRISPR细胞系对靶向蛋白质降解化合物进行高通量细胞分析

High-Throughput Cellular Profiling of Targeted Protein Degradation Compounds using HiBiT CRISPR Cell Lines.

作者信息

Riching Kristin M, Mahan Sarah D, Urh Marjeta, Daniels Danette L

机构信息

Promega Corporation.

Promega Corporation;

出版信息

J Vis Exp. 2020 Nov 9(165). doi: 10.3791/61787.

Abstract

Targeted protein degradation compounds, including molecular glues or proteolysis targeting chimeras, are an exciting new therapeutic modality in small molecule drug discovery. This class of compounds induces protein degradation by bringing into proximity the target protein and the E3 ligase machinery proteins required to ubiquitinate and ultimately degrade the target protein through the ubiquitin-proteasomal pathway (UPP). Profiling of target protein degradation in a high-throughput fashion, however, remains highly challenging given the complexity of cellular pathways required to achieve degradation. Here we present a protocol and screening strategy based on the use of CRISPR/Cas9 endogenous tagging of target proteins with the 11 amino acid HiBiT tag which complements with high affinity to the LgBiT protein, to produce a luminescent protein. These CRISPR targeted cell lines with endogenous tags can be used to measure compound induced degradation in either real-time, kinetic live cell or endpoint lytic modes by monitoring luminescent signal using a luminescent plate-based reader. Here we outline the recommended screening protocols for the different formats, and also describe the calculation of key degradation parameters of rate, Dmax, DC50, Dmax50, as well as multiplexing with cell viability assays. These approaches enable rapid discovery and triaging of early stage compounds while maintaining endogenous expression and regulation of target proteins in relevant cellular backgrounds, allowing for efficient optimization of lead therapeutic compounds.

摘要

靶向蛋白质降解化合物,包括分子胶或蛋白酶靶向嵌合体,是小分子药物发现中一种令人兴奋的新治疗方式。这类化合物通过使靶蛋白与泛素化所需的E3连接酶机制蛋白靠近,从而诱导蛋白质降解,并最终通过泛素-蛋白酶体途径(UPP)降解靶蛋白。然而,鉴于实现降解所需的细胞途径的复杂性,以高通量方式分析靶蛋白降解仍然极具挑战性。在此,我们提出一种基于使用CRISPR/Cas9对靶蛋白进行内源性标记的方案和筛选策略,该标记采用11个氨基酸的HiBiT标签,其与LgBiT蛋白具有高亲和力互补,从而产生一种发光蛋白。这些带有内源性标签的CRISPR靶向细胞系可通过使用基于发光板的读数器监测发光信号,用于在实时、动态活细胞或终点裂解模式下测量化合物诱导的降解。在此,我们概述了不同形式的推荐筛选方案,并描述了速率、Dmax、DC50、Dmax50等关键降解参数的计算,以及与细胞活力测定的多重分析。这些方法能够在保持相关细胞背景中靶蛋白的内源性表达和调控的同时,快速发现和筛选早期化合物,从而实现先导治疗化合物的高效优化。

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