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一项CRISPR激活筛选确定FBXO22为一种支持靶向蛋白质降解的E3连接酶。

A CRISPR activation screen identifies FBXO22 as an E3 ligase supporting targeted protein degradation.

作者信息

Basu Ananya A, Zhang Chenlu, Riha Isabella A, Magassa Assa, Ko Felicia, Zhang Xiaoyu

出版信息

bioRxiv. 2023 Sep 16:2023.09.15.557708. doi: 10.1101/2023.09.15.557708.

Abstract

Targeted protein degradation (TPD) represents a potent chemical biology paradigm that leverages the cellular degradation machinery to pharmacologically eliminate specific proteins of interest. Although multiple E3 ligases have been discovered to facilitate TPD, there exists a compelling requirement to diversify the pool of E3 ligases available for such applications. This expansion will broaden the scope of potential protein targets, accommodating those with varying subcellular localizations and expression patterns. In this study, we describe a CRISPR-based transcriptional activation screen focused on human E3 ligases, with the goal of identifying E3 ligases that can facilitate heterobifunctional compound-mediated target degradation. This approach allows us to address the limitations associated with investigating candidate degrader molecules in specific cell lines that either lack or have low levels of the desired E3 ligases. Through this approach, we identified a candidate proteolysis-targeting chimera (PROTAC), 22-SLF, that induces the degradation of FKBP12 when the FBXO22 gene transcription is activated. 22-SLF induced the degradation of endogenous FKBP12 in a FBXO22-dependent manner across multiple cancer cell lines. Subsequent mechanistic investigations revealed that 22-SLF interacts with C227 and/or C228 in FBXO22 to achieve the target degradation. Finally, we demonstrated the versatility of FBXO22-based PROTACs by effectively degrading another endogenous protein BRD4. This study uncovers FBXO22 as an E3 ligase capable of supporting ligand-induced protein degradation through electrophilic PROTACs. The platform we have developed can readily be applied to elucidate protein degradation pathways by identifying E3 ligases that facilitate either small molecule-induced or endogenous protein degradation.

摘要

靶向蛋白质降解(TPD)是一种强大的化学生物学范式,它利用细胞降解机制从药理学角度消除特定的目标蛋白质。尽管已经发现多种E3连接酶可促进TPD,但迫切需要使可用于此类应用的E3连接酶库多样化。这种扩展将拓宽潜在蛋白质靶点的范围,以适应具有不同亚细胞定位和表达模式的靶点。在本研究中,我们描述了一项基于CRISPR的转录激活筛选,该筛选聚焦于人类E3连接酶,目的是鉴定能够促进异双功能化合物介导的靶点降解的E3连接酶。这种方法使我们能够解决在缺乏或低水平表达所需E3连接酶的特定细胞系中研究候选降解分子时所面临的局限性。通过这种方法,我们鉴定出一种候选蛋白酶靶向嵌合体(PROTAC),即22-SLF,当FBXO22基因转录被激活时,它能诱导FKBP12的降解。22-SLF在多种癌细胞系中以FBXO22依赖的方式诱导内源性FKBP12的降解。随后的机制研究表明,22-SLF与FBXO22中的C227和/或C228相互作用以实现靶点降解。最后,我们通过有效降解另一种内源性蛋白质BRD4,证明了基于FBXO22的PROTAC的通用性。本研究揭示了FBXO22作为一种E3连接酶,能够通过亲电PROTAC支持配体诱导的蛋白质降解。我们开发的平台可通过鉴定促进小分子诱导或内源性蛋白质降解的E3连接酶,轻松应用于阐明蛋白质降解途径。

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