de Laat W L, Appeldoorn E, Jaspers N G, Hoeijmakers J H
Department of Cell Biology and Genetics, Medical Genetics Centre, Erasmus University, P. O. Box 1738, 3000 DR Rotterdam, The Netherlands.
J Biol Chem. 1998 Apr 3;273(14):7835-42. doi: 10.1074/jbc.273.14.7835.
The heterodimeric complex ERCC1-XPF is a structure-specific endonuclease responsible for the 5' incision during mammalian nucleotide excision repair (NER). Additionally, ERCC1-XPF is thought to function in the repair of interstrand DNA cross-links and, by analogy to the homologous Rad1-Rad10 complex in Saccharomyces cerevisiae, in recombination between direct repeated DNA sequences. To gain insight into the role of ERCC1-XPF in such recombinational processes and in the NER reaction, we studied in detail the DNA structural elements required for ERCC1-XPF endonucleolytic activity. Recombinant ERCC1-XPF, purified from insect cells, was found to cleave stem-loop substrates at the DNA junction in the absence of other proteins like replication protein A, showing that the structure-specific endonuclease activity is intrinsic to the complex. Cleavage depended on the presence of divalent cations and was optimal in low Mn2+ concentrations (0.2 mM). A minimum of 4-8 unpaired nucleotides was required for incisions by ERCC1-XPF. Splayed arm and flap substrates were also cut by ERCC1-XPF, resulting in the removal of 3' protruding single-stranded arms. All incisions occurred in one strand of duplex DNA at the 5' side of a junction with single-stranded DNA. The exact cleavage position varied from 2 to 8 nucleotides away from the junction. One single-stranded arm, protruding either in the 3' or 5' direction, was necessary and sufficient for correct positioning of incisions by ERCC1-XPF. Our data specify the engagement of ERCC1-XPF in NER and allow a more direct search for its specific role in recombination.
异二聚体复合物ERCC1-XPF是一种结构特异性核酸内切酶,负责哺乳动物核苷酸切除修复(NER)过程中的5'端切割。此外,ERCC1-XPF被认为在链间DNA交联修复中发挥作用,并且类似于酿酒酵母中的同源Rad1-Rad10复合物,在直接重复DNA序列之间的重组中发挥作用。为了深入了解ERCC1-XPF在这种重组过程和NER反应中的作用,我们详细研究了ERCC1-XPF核酸内切酶活性所需的DNA结构元件。从昆虫细胞中纯化的重组ERCC1-XPF在没有其他蛋白质(如复制蛋白A)的情况下,能在DNA连接处切割茎环底物,表明该复合物具有内在的结构特异性核酸内切酶活性。切割依赖于二价阳离子的存在,在低浓度Mn2+(0.2 mM)时最适宜。ERCC1-XPF切割至少需要4-8个未配对的核苷酸。ERCC1-XPF也能切割张开臂和瓣状底物,导致3'突出单链臂的去除。所有切割都发生在双链DNA的一条链上,位于与单链DNA连接处的5'侧。确切的切割位置在离连接处2到8个核苷酸之间变化。一个3'或5'方向突出的单链臂对于ERCC1-XPF正确定位切割是必要且充分的。我们的数据明确了ERCC1-XPF在NER中的作用,并有助于更直接地探寻其在重组中的具体作用。