RAD51 recruitment but not replication fork stability associates with PARP inhibitor response in ovarian cancer patient-derived xenograft models.

IF 3.4 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
NAR cancer Pub Date : 2024-11-28 eCollection Date: 2024-12-01 DOI:10.1093/narcan/zcae044
Francien Talens, Vivian Oliviera Nunes Teixeira, Yannick P Kok, Mengting Chen, Efraim H Rosenberg, Rashmie Debipersad, Evelien W Duiker, Nathalie van den Tempel, Marketa Janatova, Petra Zemankova, Petra M Nederlof, G Bea A Wisman, Zdenek Kleibl, Steven de Jong, Marcel A T M van Vugt
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引用次数: 0

Abstract

Poly(ADP-ribose) polymerase (PARP) inhibitors (PARPis) are currently used to treat BRCA1/2 mutant cancers. Although PARPi sensitivity has been attributed to homologous recombination (HR) defects, other roles of HR factors have also been linked to response to PARPi, including replication fork protection. In this study, we investigated PARPi sensitivity in ovarian cancer patient-derived xenograft (PDX) models in relation to HR proficiency and replication fork protection. Analysis of BRCA1/2 status showed that in our cohort of 31 ovarian cancer PDX models 22.6% harbored a BRCA1/2 alteration (7/31), and 48.3% (15/31) were genomically unstable as measured by copy number alteration analysis. In vivo, PARPi olaparib response was measured in 15 selected PDX models. Functional assessment of HR using ex vivo irradiation-induced RAD51 foci formation identified all olaparib-sensitive PDX models, including four models without BRCA1/2 alterations. In contrast, replication fork protection or replication speed in ex vivo tumor tissue did not correlate with olaparib response. Targeted panel sequencing in olaparib-sensitive models lacking BRCA1/2 alterations revealed a MUS81 variant as a possible mechanism underlying PARPi sensitivity. Combined, we show that ex vivo RAD51 analysis effectively predicts in vivo olaparib response and revealed a subset of PARPi-sensitive, HR-deficient ovarian cancer PDX models, lacking a BRCA1/2 alteration.

在卵巢癌患者来源的异种移植模型中,RAD51募集而非复制叉稳定性与PARP抑制剂反应相关。
聚(adp -核糖)聚合酶(PARP)抑制剂(PARPis)目前用于治疗BRCA1/2突变型癌症。虽然PARPi敏感性归因于同源重组(HR)缺陷,但HR因子的其他作用也与PARPi应答有关,包括复制分叉保护。在这项研究中,我们研究了PARPi在卵巢癌患者源性异种移植(PDX)模型中的敏感性与HR熟练度和复制叉保护的关系。BRCA1/2状态分析显示,在我们的31例卵巢癌PDX模型队列中,22.6%存在BRCA1/2变异(7/31),48.3%(15/31)的拷贝数变异分析显示基因组不稳定。在体内,在15种选定的PDX模型中测量PARPi奥拉帕尼的反应。通过体外照射诱导RAD51病灶形成的HR功能评估确定了所有奥拉帕尼敏感的PDX模型,包括4个没有BRCA1/2改变的模型。相比之下,体外肿瘤组织中的复制叉保护或复制速度与奥拉帕尼反应无关。在缺乏BRCA1/2改变的奥拉帕尼敏感模型中,靶向面板测序显示MUS81变体可能是PARPi敏感性的潜在机制。总之,我们发现体外RAD51分析有效地预测了体内奥拉帕尼的反应,并揭示了parpi敏感的hr缺陷卵巢癌PDX模型的一个子集,缺乏BRCA1/2改变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
6.90
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审稿时长
13 weeks
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