LBPO.ET04 · 实验与分子治疗 · Late-Breaking

PARP1在单链DNA断裂处活性及捕获的原位测量

In situ measurement of PARP1 activity and trapping at single-strand DNA breaks

编号 LB461 展板 8 时间 4/22 09:00–12:00 区域 Section 53 主讲 Zsombor Prucsi, MSc
分会场 Late-Breaking Research: Experimental and Molecular Therapeutics 4
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作者与单位 Authors & Affiliations

Franek Sierpowski, Katarzyna Fryt, Jakub Lechowski, Zsombor Prucsi, Agnieszka Waligórska, Magdalena Kordon-Kiszala, Kamil Solarczyk

intoDNA S.A., Kraków, Poland

摘要 Abstract

中文摘要
聚(ADP-核糖)聚合酶抑制剂(PARPi)已经改变了具有DNA损伤修复缺陷肿瘤的治疗,然而其临床活性不仅取决于催化抑制,还取决于PARP1在单链DNA断裂(SSB)处的捕获。尽管PARP1捕获在治疗疗效、耐药性和毒性方面发挥着核心作用,但目前仍缺乏在原位直接测量PARP1在SSB位点结合的方法。现有的检测方法依赖于间接替代指标,如整体PARylation(多聚ADP核糖基化)或下游DNA损伤标志物,从而限制了机制和转化层面的洞察。我们报道了sSTRIDE-PARP1的开发,这是一种新型原位检测方法,能够以单细胞分辨率直接检测定位于单链DNA断裂处的PARP1。sSTRIDE-PARP1能够定量测量完整细胞内PARP1在受损DNA处的结合。利用该检测方法,我们区分了具有不同基础PARylation水平和PARP1活性的细胞系。PARP抑制剂治疗诱导sSTRIDE-PARP1信号显著增加,与PARP1捕获增强一致,且该效应在包括olaparib和PARP1选择性抑制剂saruparib在内的多种药物中均可观察到。重要的是,PARP1缺陷细胞中信号的丢失证明了该检测的特异性,证实该读数严格依赖于PARP1。总之,sSTRIDE-PARP1能够在原位直接、功能性地测量PARP1在单链DNA断裂处的捕获。该检测方法提供了一个转化平台,可用于PARP抑制剂的机制表征、PARPi捕获能力的比较分析,以及功能性生物标志物的开发,以支持DNA损伤反应靶向治疗中的患者分层、药物开发和耐药性研究。
查看英文原文 English abstract
Poly(ADP-ribose) polymerase inhibitors (PARPi) have transformed the treatment of tumors with defects in DNA damage repair, yet their clinical activity depends not only on catalytic inhibition but also on PARP1 trapping at single-strand DNA breaks (SSBs). Despite the central role of PARP1 trapping in therapeutic efficacy, resistance, and toxicity, direct methods to measure PARP1 engagement at sites of SSBs in situ are lacking. Current assays rely on indirect surrogates such as global PARylation or downstream DNA damage markers, limiting mechanistic and translational insight. We report the development of sSTRIDE-PARP1, a novel in situ assay that directly detects PARP1 localized at single-strand DNA breaks at single-cell resolution. sSTRIDE-PARP1 enables quantitative measurement of PARP1 engagement at damaged DNA within intact cells. Using this assay, we distinguish cell lines with different basal levels of PARylation and PARP1 activity. Treatment with PARP inhibitors induces a robust increase in sSTRIDE-PARP1 signal, consistent with enhanced PARP1 trapping, and this effect is observed across multiple agents, including olaparib and the PARP1-selective inhibitor saruparib. Importantly, assay specificity is demonstrated by loss of signal in PARP1-deficient cells, confirming that the readout is strictly dependent on PARP1. In summary, sSTRIDE-PARP1 enables direct, functional measurement of PARP1 trapping at single-strand DNA breaks in situ . This assay provides a translational platform for mechanistic characterization of PARP inhibitors, comparative profiling of PARPi trapping capacity, and development of functional biomarkers to support patient stratification, drug development, and resistance studies in DNA damage response targeted therapies.
利益披露 Disclosure
F. Sierpowski, None.. K. Fryt, None.. J. Lechowski, None.. Z. Prucsi, None.. A. Waligórska, None.. M. Kordon-Kiszala, None.. K. Solarczyk, None.

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