PO.ET06.03 · 实验与分子治疗

使用sSTRIDE-NER直接测量NER活性

Direct measurement of NER activity using sSTRIDE-NER

编号 1737 展板 3 时间 4/20 09:00–12:00 区域 Section 14 主讲 Zsombor Prucsi, MSc
分会场 DNA Damage and Repair 2
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作者与单位 Authors & Affiliations

Olga Wójcikowska, Julita Imioło, Magdalena Bartyńska, Zsombor Prucsi, Magdalena Kordon-Kiszala, Kamil Solarczyk

intoDNA S.A., Kraków, Poland

摘要 Abstract

中文摘要
核苷酸切除修复(NER)清除由紫外线和顺铂等化疗药物产生的大体积DNA加合物和链内交联。NER能力深刻影响肿瘤对DNA损伤疗法的反应和耐药。尽管其具有生物学和临床重要性,但目前缺乏直接、定量的原位测量NER活性的方法。现有方法提供间接或整体性测量,无法捕捉单细胞水平修复的空间和时间动态。我们开发了sSTRIDE-NER,一种基于STRIDE(单个DNA末端的灵敏识别,SensiTive Recognition of Individual DNA Ends)平台的新分析方法,旨在可视化和测量活跃NER过程中产生的单链断裂(SSB)。该分析靶向XPD,即TFIIH复合物的核心解旋酶,其定位于切口位点附近——在修复过程中此处发生瞬时SSB。将XPD检测纳入STRIDE工作流程,可选择性地可视化单个细胞核中与NER相关的DNA末端。验证实验证明了高特异性:多个阴性技术对照产生极低的背景信号。顺铂被用作阳性对照,因其诱导大体积链内交联,可强健地激活NER。顺铂暴露后,sSTRIDE-NER显示核信号强度呈时间依赖性增加,与NER相关SSB的累积一致。sSTRIDE-NER提供了首个通过检测XPD邻近的SSB来直接测量NER活性的单细胞、基于成像的方法。该分析为在癌细胞模型和患者来源样本中功能性地分析NER能力提供了新机会。它可用于研究铂类药物耐药机制、评估靶向DNA修复的药物,以及支持开发预测治疗反应的功能性生物标志物。
查看英文原文 English abstract
Nucleotide Excision Repair (NER) removes bulky DNA adducts and intrastrand crosslinks generated by ultraviolet light and chemotherapeutic agents such as cisplatin. NER capacity profoundly influences tumor response and resistance to DNA-damaging therapies. Despite its biological and clinical importance, direct and quantitative methods for measuring NER activity in situ are lacking. Current approaches provide indirect or bulk measurements that fail to capture the spatial and temporal dynamics of repair at the single-cell level. We developed sSTRIDE-NER, a new assay based on the STRIDE (SensiTive Recongition of Individual DNA Ends) platform, designed to visualize and measure single-strand breaks (SSBs) generated during active NER. The assay targets XPD, a core helicase of the TFIIH complex that localizes near incision sites where transient SSBs occur during the repair process. Incorporation of XPD detection into the STRIDE workflow enabled selective visualization of NER-associated DNA ends in individual nuclei. Validation experiments demonstrated high specificity: multiple negative technical controls yielded minimal background signal. Cisplatin was used as a positive control, as it induces bulky intrastrand crosslinks that robustly activate NER. Following cisplatin exposure, sSTRIDE-NER revealed a time-dependent increase in nuclear signal intensity, consistent with accumulation of NER-associated SSBs. sSTRIDE-NER provides the first single-cell, image-based method for direct measurement of NER activity through detection of SSBs proximal to XPD. This assay offers new opportunities to functionally profile NER capacity in cancer cell models and patient-derived samples. It can be applied to investigate mechanisms of resistance to platinum drugs, to evaluate DNA repair-targeting agents, and to support the development of functional biomarkers predictive of therapy response.
利益披露 Disclosure
O. Wójcikowska, None.. J. Imioło, None.. M. Bartyńska, None.. Z. Prucsi, None.. M. Kordon-Kiszala, None.. K. Solarczyk, None.

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