TNG348的特性:一种选择性的、变构的USP1抑制剂,在同源重组缺陷的肿瘤中与PARP抑制剂协同作用。

IF 5.3 2区 医学 Q1 ONCOLOGY
Antoine Simoneau, Charlotte B Pratt, Hsin-Jung Wu, Shreya S Rajeswaran, Charlotte Grace Comer, Sirimas Sudsakorn, Wenhai Zhang, Shangtao Liu, Samuel R Meier, Ashley H Choi, Tenzing Khendu, Hannah Stowe, Binzhang Shen, Douglas A Whittington, Yingnan Chen, Yi Yu, William D Mallender, Tianshu Feng, Jannik N Andersen, John P Maxwell, Scott Throner
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引用次数: 0

摘要

抑制去泛素化酶USP1可以诱导以同源重组缺陷(HRD)为特征的肿瘤的合成致死性,并且代表了一种治疗BRCA1/2突变型癌症的新治疗策略,可能包括肿瘤对PARP抑制剂(PARPi)具有原发性或获得性耐药的患者。在这里,我们提出了一个全面的表征TNG348,一个变构,选择性和可逆的USP1抑制剂(USP1i)。TNG348在体外和体内诱导泛素化蛋白底物的剂量依赖性积累。CRISPR筛选显示,TNG348通过rad18依赖的ub-PCNA诱导,破坏DNA损伤耐受性的翻译合成途径,发挥其抗肿瘤作用。虽然TNG348和PARPi具有选择性杀死HRD肿瘤细胞的能力,但CRISPR筛选显示TNG348和PARPi是通过不同的机制来实现的。特别是,敲除PARP1会引起对PARPi的耐药性,但会使细胞对TNG348治疗敏感。与这些发现相一致的是,TNG348与PARPi联合在HRD肿瘤中具有协同抗肿瘤作用,在多种小鼠异种移植肿瘤模型中可抑制肿瘤生长并使肿瘤消退。重要的是,我们在人类癌症模型中的数据进一步表明,在PARPi治疗中加入TNG348可以克服体内获得性PARPi耐药。虽然TNG348的临床开发由于患者意外的肝毒性(NCT06065059)而中断,但目前的数据为继续探索USP1作为治疗BRCA1/2突变或HRD癌症患者的药物靶点提供了临床前和机制支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of TNG348: A Selective, Allosteric USP1 Inhibitor That Synergizes with PARP Inhibitors in Tumors with Homologous Recombination Deficiency.

Inhibition of the deubiquitinating enzyme USP1 can induce synthetic lethality in tumors characterized by homologous recombination deficiency (HRD) and represents a novel therapeutic strategy for the treatment of BRCA1/2-mutant cancers, potentially including patients whose tumors have primary or acquired resistance to PARP inhibitors (PARPi). In this study, we present a comprehensive characterization of TNG348, an allosteric, selective, and reversible inhibitor of USP1. TNG348 induces dose-dependent accumulation of ubiquitinated protein substrates both in vitro and in vivo. CRISPR screens show that TNG348 exerts its antitumor effect by disrupting the translesion synthesis pathway of DNA damage tolerance through RAD18-dependent ubiquitinated PCNA. Although TNG348 and PARPi share the ability to selectively kill HRD tumor cells, CRISPR screens reveal that TNG348 and PARPi do so through discrete mechanisms. Particularly, knocking out PARP1 causes resistance to PARPi but sensitizes cells to TNG348 treatment. Consistent with these findings, combination of TNG348 with PARPi leads to synergistic antitumor effects in HRD tumors, resulting in tumor growth inhibition and regression in multiple mouse xenograft tumor models. Importantly, our data on human cancer models further show that the addition of TNG348 to PARPi treatment can overcome acquired PARPi resistance in vivo. Although the clinical development of TNG348 has been discontinued because of unexpected liver toxicity in patients (NCT06065059), the present data provide preclinical and mechanistic support for the continued exploration of USP1 as a drug target for the treatment of patients with BRCA1/2-mutant or HRD cancers.

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来源期刊
CiteScore
11.20
自引率
1.80%
发文量
331
审稿时长
3 months
期刊介绍: Molecular Cancer Therapeutics will focus on basic research that has implications for cancer therapeutics in the following areas: Experimental Cancer Therapeutics, Identification of Molecular Targets, Targets for Chemoprevention, New Models, Cancer Chemistry and Drug Discovery, Molecular and Cellular Pharmacology, Molecular Classification of Tumors, and Bioinformatics and Computational Molecular Biology. The journal provides a publication forum for these emerging disciplines that is focused specifically on cancer research. Papers are stringently reviewed and only those that report results of novel, timely, and significant research and meet high standards of scientific merit will be accepted for publication.
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