Segers-Nolten G M J, Wyman C, Wijgers N, Vermeulen W, Lenferink A T M, Hoeijmakers J H J, Greve J, Otto C
Department of Applied Physics, Biophysical Technology Group, Biomedical Technology Institute, University of Twente, PO Box 217, 7500 AE Enschede, The Netherlands.
Nucleic Acids Res. 2002 Nov 1;30(21):4720-7. doi: 10.1093/nar/gkf599.
We used scanning confocal fluorescence microscopy to observe and analyze individual DNA- protein complexes formed between human nucleotide excision repair (NER) proteins and model DNA substrates. For this purpose human XPA protein was fused to EGFP, purified and shown to be functional. Binding of EGFP-labeled XPA protein to a Cy3.5-labeled DNA substrate, in the presence and absence of RPA, was assessed quantitatively by simultaneous excitation and emission detection of both fluorophores. Co-localization of Cy3.5 and EGFP signals within one diffraction limited spot indicated complexes of XPA with DNA. Measurements were performed on samples in a 1% agarose matrix in conditions that are compatible with protein activity and where reactions can be studied under equilibrium conditions. In these samples DNA alone was freely diffusing and protein-bound DNA was immobile, whereby they could be discriminated resulting in quantitative data on DNA binding. On the single molecule level approximately 10% of XPA co-localized with DNA; this increased to 32% in the presence of RPA. These results, especially the enhanced binding of XPA in the presence of RPA, are similar to those obtained in bulk experiments, validating the utility of scanning confocal fluorescence microscopy for investigating functional interactions at the single molecule level.
我们使用扫描共聚焦荧光显微镜来观察和分析人类核苷酸切除修复(NER)蛋白与模型DNA底物之间形成的单个DNA-蛋白质复合物。为此,将人类XPA蛋白与EGFP融合,进行纯化并证明其具有功能。通过同时激发和检测两种荧光团,定量评估了EGFP标记的XPA蛋白在存在和不存在RPA的情况下与Cy3.5标记的DNA底物的结合。Cy3.5和EGFP信号在一个衍射极限光斑内的共定位表明XPA与DNA形成了复合物。在与蛋白质活性兼容且可在平衡条件下研究反应的条件下,对1%琼脂糖基质中的样品进行测量。在这些样品中,单独的DNA自由扩散,而与蛋白质结合的DNA则固定不动,由此可以区分它们,从而获得关于DNA结合的定量数据。在单分子水平上,约10%的XPA与DNA共定位;在存在RPA的情况下,这一比例增加到32%。这些结果,特别是在存在RPA时XPA结合增强的结果,与在大量实验中获得的结果相似,验证了扫描共聚焦荧光显微镜在研究单分子水平功能相互作用方面的实用性。