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一种监测活细胞中修复蛋白功能性损伤特异性募集的新方法。

A novel method for monitoring functional lesion-specific recruitment of repair proteins in live cells.

作者信息

Woodrick Jordan, Gupta Suhani, Khatkar Pooja, Dave Kalpana, Levashova Darya, Choudhury Sujata, Elias Hadi, Saha Tapas, Mueller Susette, Roy Rabindra

机构信息

Department of Oncology, Lombardi Comprehensive Cancer Center, Georgetown University Medical School, Washington, DC 20057, United States.

Department of Oncology, Lombardi Comprehensive Cancer Center, Georgetown University Medical School, Washington, DC 20057, United States.

出版信息

Mutat Res. 2015 May;775:48-58. doi: 10.1016/j.mrfmmm.2015.03.013. Epub 2015 Apr 4.

Abstract

DNA-protein relationships have been studied by numerous methods, but a particular gap in methodology lies in the study of DNA adduct-specific interactions with proteins in vivo, which particularly affects the field of DNA repair. Using the repair of a well-characterized and ubiquitous adduct, the abasic (AP) site, as a model, we have developed a comprehensive method of monitoring DNA lesion-specific recruitment of proteins in vivo over time. We utilized a surrogate system in which a Cy3-labeled plasmid containing a single AP-site was transfected into cells, and the interaction of the labeled DNA with BER enzymes, including APE1, Polβ, LIG1, and FEN1, was monitored by immunofluorescent staining of the enzymes by Alexafluor-488-conjugated secondary antibody. The recruitment of enzymes was characterized by quantification of Cy3-Alexafluor-488 co-localization. To validate the microscopy-based method, repair of the transfected AP-site DNA was also quantified at various time points post-transfection using a real time PCR-based method. Notably, the recruitment time kinetics for each enzyme were consistent with AP-site repair time kinetics. This microscopy-based methodology is reliable in detecting the recruitment of proteins to specific DNA substrates and can be extended to study other in vivo DNA-protein relationships in any DNA sequence and in the context of any DNA structure in transfectable proliferating or quiescent cells. The method may be applied to a variety of disciplines of nucleic acid transaction pathways, including repair, replication, transcription, and recombination.

摘要

人们已经通过多种方法研究了DNA与蛋白质的关系,但在方法学上存在一个特别的空白,即对体内DNA加合物与蛋白质的特异性相互作用的研究,这尤其影响了DNA修复领域。以一种特征明确且普遍存在的加合物——无碱基(AP)位点的修复作为模型,我们开发了一种全面的方法,用于监测体内随着时间推移蛋白质对DNA损伤的特异性募集。我们利用了一个替代系统,将含有单个AP位点的Cy3标记质粒转染到细胞中,并通过用Alexafluor - 488偶联的二抗对这些酶进行免疫荧光染色,来监测标记的DNA与碱基切除修复(BER)酶(包括APE1、Polβ、LIG1和FEN1)的相互作用。通过量化Cy3 - Alexafluor - 488的共定位来表征酶的募集情况。为了验证基于显微镜的方法,还使用基于实时PCR的方法在转染后的不同时间点对转染的AP位点DNA的修复情况进行了量化。值得注意的是,每种酶的募集时间动力学与AP位点的修复时间动力学是一致的。这种基于显微镜的方法在检测蛋白质募集到特定DNA底物方面是可靠的,并且可以扩展到研究可转染的增殖或静止细胞中任何DNA序列和任何DNA结构背景下的其他体内DNA与蛋白质的关系。该方法可应用于核酸交易途径的各种学科,包括修复、复制、转录和重组。

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本文引用的文献

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