Lavrik Olga I, Kolpashchikov Dmitry M, Prasad Rajendra, Sobol Robert W, Wilson Samuel H
Laboratory of Structural Biology, National Institute of Environmental Health Sciences, National Institutes of Health, 111 T. W. Alexander Drive, Research Triangle Park, NC 27709, USA.
Nucleic Acids Res. 2002 Jul 15;30(14):e73. doi: 10.1093/nar/gnf073.
A system of photoaffinity reagents for selective labeling of DNA polymerases in extracts has been examined. To create the photoreactive DNA probe in situ, DNA substrates containing a synthetic abasic site are incubated in mouse embryonic fibroblast (MEF) cellular extract in the presence of base-substituted arylazido derivatives of dNTPs. This results in synthesis of a photoreactive long patch base excision repair (BER) intermediate. The arylazido photoreactive group is then activated through energy transfer from the pyrene group of a dNTP analog (Pyr-dUTP), following 365 nm UV light exposure. Pyr-dUTP binds to the active site of DNA polymerases, and the pyrene group, when excited by 365 nm UV light, activates the nearby photoreactive group in the BER intermediate resulting in crosslinking of DNA-bound DNA polymerases. Under these conditions, various DNA binding proteins that are unable to bind Pyr-dUTP are not crosslinked to DNA. DNA polymerase beta is the predominant crosslinked protein observed in the MEF extract. In contrast, several other DNA binding proteins are labeled under conditions of direct UV light activation of the photoreactive group at 312 nm. This study illustrates use of a new method of selective labeling of DNA polymerases in a crude cellular extract.
一种用于选择性标记提取物中DNA聚合酶的光亲和试剂系统已得到研究。为了原位生成光反应性DNA探针,将含有合成无碱基位点的DNA底物在dNTPs的碱基取代芳基叠氮衍生物存在的情况下,于小鼠胚胎成纤维细胞(MEF)细胞提取物中孵育。这导致合成一种光反应性长片段碱基切除修复(BER)中间体。然后,在365nm紫外线照射后,芳基叠氮光反应基团通过来自dNTP类似物(Pyr-dUTP)的芘基团的能量转移而被激活。Pyr-dUTP与DNA聚合酶的活性位点结合,并且芘基团在被365nm紫外线激发时,激活BER中间体中附近的光反应基团,导致与DNA结合的DNA聚合酶发生交联。在这些条件下,各种无法结合Pyr-dUTP的DNA结合蛋白不会与DNA交联。DNA聚合酶β是在MEF提取物中观察到的主要交联蛋白。相比之下,在312nm光反应基团直接紫外线激活的条件下,其他几种DNA结合蛋白会被标记。这项研究说明了一种在粗细胞提取物中选择性标记DNA聚合酶的新方法的应用。