Roche Y, Zhang D, Segers-Nolten G M J, Vermeulen W, Wyman C, Sugasawa K, Hoeijmakers J, Otto C
Biophysical Engineering Group, Faculty of Science and Technology, MESA+ Institute for Nanotechnology and BMTI, University of Twente, Enschede, The Netherlands.
J Fluoresc. 2008 Sep;18(5):987-95. doi: 10.1007/s10895-008-0390-6. Epub 2008 Jun 24.
The interaction of the nucleotide excision repair (NER) protein dimeric complex XPC-hHR23B, which is implicated in the DNA damage recognition step, with three Cy3.5 labeled 90-bp double-stranded DNA substrates (unmodified, with a central unpaired region, and cholesterol modified) and a 90-mer single-strand DNA was investigated in solution by fluorescence correlation spectroscopy. Autocorrelation functions obtained in the presence of an excess of protein show larger diffusion times (tau (d)) than for free DNA, indicating the presence of DNA-protein bound complexes. The fraction of DNA bound (theta), as a way to describe the percentage of protein bound to DNA, was directly estimated from FCS data. A significantly stronger binding capability for the cholesterol modified substrate (78% DNA bound) than for other double-stranded DNA substrates was observed, while the lowest affinity was found for the single-stranded DNA (27%). This is in accordance with a damage recognition role of the XPC protein. The similar affinity of XPC for undamaged and 'bubble' DNA substrates (58% and 55%, respectively) indicates that XPC does not specifically bind to this type of DNA substrate comprising a large (30-nt) central unpaired region.
参与DNA损伤识别步骤的核苷酸切除修复(NER)蛋白二聚体复合物XPC-hHR23B,与三种Cy3.5标记的90碱基对双链DNA底物(未修饰、具有中央未配对区域和胆固醇修饰)以及一种90聚体单链DNA之间的相互作用,通过荧光相关光谱法在溶液中进行了研究。在存在过量蛋白质的情况下获得的自相关函数显示,与游离DNA相比,扩散时间(tau (d))更长,这表明存在DNA-蛋白质结合复合物。从FCS数据直接估计了结合的DNA分数(theta),作为描述与DNA结合的蛋白质百分比的一种方式。观察到胆固醇修饰的底物具有比其他双链DNA底物更强的结合能力(78%的DNA结合),而单链DNA的亲和力最低(27%)。这与XPC蛋白的损伤识别作用一致。XPC对未损伤和“气泡”DNA底物的相似亲和力(分别为58%和55%)表明,XPC不会特异性结合包含大的(30个核苷酸)中央未配对区域的这种类型的DNA底物。