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光子晶体表面模式实时成像 RAD51 与单链 DNA 底物的 DNA 修复蛋白相互作用。

Photonic Crystal Surface Mode Real-Time Imaging of RAD51 DNA Repair Protein Interaction with the ssDNA Substrate.

机构信息

Laboratoire de Recherche en Nanosciences, LRN-EA4682, Structure Fédérative de Recherche Cap Santé, UFR de Pharmacie, Université de Reims Champagne-Ardenne, 51100 Reims, France.

Nantes Université, CNRS, US2B, UMR 6286, IMPACT Platform and SFR Bonamy, 44000 Nantes, France.

出版信息

Biosensors (Basel). 2024 Jan 14;14(1):43. doi: 10.3390/bios14010043.

Abstract

Photonic crystals (PCs) are promising tools for label-free sensing in drug discovery screening, diagnostics, and analysis of ligand-receptor interactions. Imaging of PC surface modes has emerged as a novel approach to the detection of multiple binding events at the sensor surface. PC surface modification and decoration with recognition units yield an interface providing the highly sensitive detection of cancer biomarkers, antibodies, and oligonucleotides. The RAD51 protein plays a central role in DNA repair via the homologous recombination pathway. This recombinase is essential for the genome stability and its overexpression is often correlated with aggressive cancer. RAD51 is therefore a potential target in the therapeutic strategy for cancer. Here, we report the designing of a PC-based array sensor for real-time monitoring of oligonucleotide-RAD51 recruitment by means of surface mode imaging and validation of the concept of this approach. Our data demonstrate that the designed biosensor ensures the highly sensitive multiplexed analysis of association-dissociation events and detection of the biomarker of DNA damage using a microfluidic PC array. The obtained results highlight the potential of the developed technique for testing the functionality of candidate drugs, discovering new molecular targets and drug entities. This paves the way to further adaption and bioanalytical use of the biosensor for high-content screening to identify new DNA repair inhibitor drugs targeting the RAD51 nucleoprotein filament or to discover new molecular targets.

摘要

光子晶体(PCs)是药物发现筛选、诊断和配体-受体相互作用分析中无标记传感的有前途的工具。PC 表面模式的成像已成为检测传感器表面上多个结合事件的新方法。通过将识别单元进行 PC 表面修饰和装饰,可以得到一个界面,从而实现对癌症生物标志物、抗体和寡核苷酸的高灵敏度检测。RAD51 蛋白在同源重组途径中通过 DNA 修复发挥核心作用。这种重组酶对于基因组稳定性至关重要,其过表达通常与侵袭性癌症相关。因此,RAD51 是癌症治疗策略中的一个潜在靶点。在这里,我们报告了一种基于 PC 的阵列传感器的设计,用于通过表面模式成像实时监测寡核苷酸-RAD51 的募集,并验证了这种方法的概念。我们的数据表明,所设计的生物传感器确保了使用微流控 PC 阵列对关联-解离事件的高灵敏度多重分析和 DNA 损伤生物标志物的检测。所获得的结果突出了开发的技术用于测试候选药物的功能、发现新的分子靶点和药物实体的潜力。这为进一步适应和生物分析用途的生物传感器进行高内涵筛选以识别针对 RAD51 核蛋白丝的新的 DNA 修复抑制剂药物或发现新的分子靶点铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1296/10813746/5a5e96a7d392/biosensors-14-00043-g001.jpg

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