Li L, Peterson C A, Lu X, Wei P, Legerski R J
Departments of Experimental Radiation Oncology, University of Texas M. D. Anderson Cancer Center, Houston, Texas 77030, USA.
Mol Cell Biol. 1999 Aug;19(8):5619-30. doi: 10.1128/MCB.19.8.5619.
Mammalian cell extracts have been shown to carry out damage-specific DNA repair synthesis induced by a variety of lesions, including those created by UV and cisplatin. Here, we show that a single psoralen interstrand cross-link induces DNA synthesis in both the damaged plasmid and a second homologous unmodified plasmid coincubated in the extract. The presence of the second plasmid strongly stimulates repair synthesis in the cross-linked plasmid. Heterologous DNAs also stimulate repair synthesis to variable extents. Psoralen monoadducts and double-strand breaks do not induce repair synthesis in the unmodified plasmid, indicating that such incorporation is specific to interstrand cross-links. This induced repair synthesis is consistent with previous evidence indicating a recombinational mode of repair for interstrand cross-links. DNA synthesis is compromised in extracts from mutants (deficient in ERCC1, XPF, XRCC2, and XRCC3) which are all sensitive to DNA cross-linking agents but is normal in extracts from mutants (XP-A, XP-C, and XP-G) which are much less sensitive. Extracts from Fanconi anemia cells exhibit an intermediate to wild-type level of activity dependent upon the complementation group. The DNA synthesis deficit in ERCC1- and XPF-deficient extracts is restored by addition of purified ERCC1-XPF heterodimer. This system provides a biochemical assay for investigating mechanisms of interstrand cross-link repair and should also facilitate the identification and functional characterization of cellular proteins involved in repair of these lesions.
哺乳动物细胞提取物已被证明能进行由多种损伤诱导的损伤特异性DNA修复合成,这些损伤包括紫外线和顺铂造成的损伤。在此,我们表明,单个补骨脂素链间交联会在受损质粒以及与提取物共孵育的第二个同源未修饰质粒中诱导DNA合成。第二个质粒的存在强烈刺激交联质粒中的修复合成。异源DNA也会在不同程度上刺激修复合成。补骨脂素单加合物和双链断裂不会在未修饰质粒中诱导修复合成,这表明这种掺入是链间交联特有的。这种诱导的修复合成与先前表明链间交联修复的重组模式的证据一致。在对DNA交联剂敏感的突变体(ERCC1、XPF、XRCC2和XRCC3缺陷)的提取物中,DNA合成受损,但在对DNA交联剂不太敏感的突变体(XP - A、XP - C和XP - G)的提取物中,DNA合成正常。范可尼贫血细胞的提取物表现出介于野生型水平之间的活性,这取决于互补组。通过添加纯化的ERCC1 - XPF异二聚体可恢复ERCC1和XPF缺陷提取物中的DNA合成缺陷。该系统为研究链间交联修复机制提供了一种生化检测方法,也应有助于鉴定和功能表征参与这些损伤修复的细胞蛋白。