PO.CL01.02 · 临床研究

DNA修复表型可指导卡铂和PARP抑制剂的应答

DNA repair phenotypes inform carboplatin and PARP inhibitor response

海报缩略图:DNA修复表型可指导卡铂和PARP抑制剂的应答
编号 1049 展板 17 时间 4/19 02:00–05:00 区域 Section 41 主讲 Ionut-Gabriel Funingana, MD
分会场 Biomarkers Predictive of Therapeutic Benefit 2
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作者与单位 Authors & Affiliations

Ionut-Gabriel Funingana1, John Ambrose2, Luca Porcu1, Philip Smith1, Bradley Thomas1, Ines Prata Machado3, Patrick Tarpey4, Mireia Crispin-Ortuzar3, Marc Tischkowitz5, Florian M. Markowetz1, Alona Sosinsky2, James D. Brenton1

1CRUK Cambridge Institute, University of Cambridge, Cambridge, United Kingdom,2Bioinformatics Department, Genomics England, London, United Kingdom,3Early Cancer Institute, University of Cambridge, Cambridge, United Kingdom,4East Genomic Laboratory Hub, Cambridge, United Kingdom,5Department of Genomic Medicine, University of Cambridge, Cambridge, United Kingdom

摘要 Abstract

中文摘要
高级别卵巢癌(HGOC)的特征是由p53通路早期破坏所驱动的多层次基因组复杂性,这使得多种突变过程和染色体不稳定(CIN)成为可能。DNA修复和复制缺陷的分子后果已被用于推导突变特征,以预测每例HGOC中起作用的突变过程。针对同源重组缺陷(HRD)特征的临床检测并不能可靠地指导HGOC女性患者使用铂类治疗或聚(ADP-核糖)聚合酶抑制剂(PARPi)。既往研究表明,多种HRD特征在同一肿瘤中于单碱基替换、插入缺失和结构变异层面均起作用。然而,各自独立的特征并不能捕捉BRCA1和BRCA2缺陷型肿瘤中活跃的错误修复程序的连续谱。在此,我们提出一种新的整合数学方法,以恢复与运行中的DNA修复通路相关的所有天然存在的基因组特征。我们建立了一项针对466例HGOC患者的全国性医疗结局研究,将肿瘤-正常深度全基因组测序(WGS)与真实世界的治疗和结局相整合。我们证明七个整合基因组特征(IGFs)捕捉了HGOC肿瘤中起作用的突变程序。我们使用因果推断方法验证了这些IGFs的临床相关性。IGF2捕捉微同源侧翼缺失、模板化插入(TINs)和间质缺失。IGF5捕捉1千碱基(kb)至多个兆碱基(Mb)的串联重复(TDs)和平端缺失。IGF8富含倒位和多Mb TDs,而IGF10将CpG颠换与TINs相关联。IGF2反映聚合酶θ介导的末端连接,与BRCA2失活、一线铂类治疗后良好预后以及维持PARP抑制剂获益减少相关。IGF5以串联重复和非同源末端连接为标志,在BRCA1失活型肿瘤中富集,预测更早复发但维持PARPi获益增加。在Cox模型中(每1个标准差单位),IGF2改善总生存(OS)(HR 0.81,95% CI 0.71-0.92),IGF8为不利因素(HR 1.25,1.08-1.46),IGF10在半数患者接受维持PARPi时预测二线复发获益(无进展生存HR 0.75,0.62-0.89)。IGF2调节二线PARPi获益(IGF2二分类×PARPi交互作用P=0.042),获益局限于IGF2低者。这一基于WGS的分类法将HRD重新界定为DNA双链断裂修复选择的连续谱。这些机制特异性、WGS衍生的表型可在临床实践中复制,为卵巢癌及其他DNA修复缺陷肿瘤中PARP抑制剂和新兴聚合酶θ(POLQ)抑制剂的生物标志物分层试验提供了基础。
查看英文原文 English abstract
High-grade ovarian carcinoma (HGOC) is characterized by multilayered genomic complexity driven by early disruption of the p53 pathway which enables diverse mutational processes and chromosomal instability (CIN). The molecular consequences of defective DNA repair and replication have been used to derive mutational signatures to predict mutational processes operative in each HGOC. Clinical testing for homologous recombination deficiency (HRD) signatures does not reliably guide the use of platinum-based therapy or poly(ADP-ribose) polymerase inhibitors (PARPi) for women with HGOC. Previous studies have shown that multiple HRD signatures are operative at the single-base substitution, indel, and structural variant levels in the same tumors. However, separate signatures do not capture the continuum of erroneous repair programs active in BRCA1 - and BRCA2 -deficient tumors. Here, we propose a new integrative mathematical approach to recover all naturally occurring genomic features associated with operational DNA repair pathways. We established a national healthcare outcome study of 466 HGOC patients, integrating tumor-normal deep whole-genome sequencing (WGS) with real-world treatment and outcomes. We demonstrated that seven integrative genomic features (IGFs) capture the mutational programs operative in HGOC tumors. We validated the clinical relevance of these IGFs using causal-inference methods. IGF2 captured microhomology‑flanked deletions, templated insertions (TINs), and interstitial deletions. IGF5 captured 1 kilobase (kb) to multi‑megabase (Mb) tandem duplications (TDs) and blunt deletions. IGF8 was rich in inversions and multi‑Mb TDs, whereas IGF10 linked CpG transversions with TINs. IGF2 reflects polymerase theta-mediated end joining, associated with BRCA2 inactivation, favorable prognosis after first-line platinum, and reduced benefit from maintenance PARP inhibitors. IGF5, marked by tandem duplications and non-homologous end joining, is enriched in BRCA1 -inactivated tumors and predicts earlier relapse but increased benefit from maintenance PARPi. In Cox models (per 1 standard deviation unit), IGF2 improved overall survival (OS) (HR 0.81, 95% CI 0.71-0.92) and IGF8 was adverse (HR 1.25, 1.08-1.46), and IGF10 predicted benefit at second‑line relapse when half of patients received maintenance PARPi (progression-free survival HR 0.75, 0.62-0.89). IGF2 modified second-line PARPi benefit ( IGF2-binary x PAPRi interaction P=0.042), with benefit confined to IGF2‑low. This WGS-based taxonomy reframes HRD as a continuum of DNA double-strand break repair choices. The mechanism-specific, WGS-derived phenotypes can be replicated in clinical practice, providing a basis for biomarker-stratified trials of PARP inhibitors and emerging polymerase theta (POLQ) inhibitors in ovarian cancer and in other tumors with DNA-repair defects.
利益披露 Disclosure
I. Funingana, GSK Travel. AstraZeneca Other, Invited speaker. J. Ambrose, None.. L. Porcu, None.. P. Smith, None.. B. Thomas, None.. I. Machado, None.. P. Tarpey, None.. M. Crispin-Ortuzar, None.. M. Tischkowitz, None. F. M. Markowetz, Tailor Bio g., Board of Directors, non-salaried role), Stock Option. A. Sosinsky, None. J. D. Brenton, Tailor Bio g., Board of Directors, non-salaried role), Stock Option. AstraZeneca Travel. GSK Travel.

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