Van Komen Stephen, Reddy Mothe Sreedhar, Krejci Lumir, Klein Hannah, Sung Patrick
Institute of Biotechnology and Department of Molecular Medicine, University of Texas Health Science Center, San Antonio, Texas 78245, USA.
J Biol Chem. 2003 Nov 7;278(45):44331-7. doi: 10.1074/jbc.M307256200. Epub 2003 Sep 8.
Saccharomyces cerevisiae SRS2 encodes an ATP-dependent DNA helicase that is needed for DNA damage checkpoint responses and that modulates the efficiency of homologous recombination. Interestingly, strains simultaneously mutated for SRS2 and a variety of DNA repair genes show low viability that can be overcome by inactivating homologous recombination, thus implicating inappropriate recombination as the cause of growth impairment in these mutants. Here, we report on our biochemical characterization of the ATPase and DNA helicase activities of Srs2. ATP hydrolysis by Srs2 occurs efficiently only in the presence of DNA, with ssDNA being considerably more effective than dsDNA in this regard. Using homopolymeric substrates, the minimal DNA length for activating ATP hydrolysis is found to be 5 nucleotides, but a length of 10 nucleotides is needed for maximal activation. In its helicase action, Srs2 prefers substrates with a 3' ss overhang, and approximately 10 bases of 3' overhanging DNA is needed for efficient targeting of Srs2 to the substrate. Even though a 3' overhang serves to target Srs2, under optimized conditions blunt-end DNA substrates are also dissociated by this protein. The ability of Srs2 to unwind helicase substrates with a long duplex region is enhanced by the inclusion of the single-strand DNA-binding factor replication protein A.
酿酒酵母SRS2编码一种依赖ATP的DNA解旋酶,该酶是DNA损伤检查点反应所必需的,并且能调节同源重组的效率。有趣的是,同时发生SRS2和多种DNA修复基因突变的菌株活力较低,而通过使同源重组失活可以克服这种情况,因此表明不适当的重组是这些突变体生长受损的原因。在此,我们报告了对Srs2的ATP酶和DNA解旋酶活性的生化特性研究。Srs2仅在存在DNA的情况下才能有效地进行ATP水解,在这方面,单链DNA比双链DNA更有效。使用同聚物底物时,发现激活ATP水解的最小DNA长度为5个核苷酸,但最大激活需要10个核苷酸的长度。在其解旋酶作用中,Srs2更喜欢具有3'单链突出端的底物,并且需要大约10个碱基的3'突出端DNA才能使Srs2有效地靶向底物。尽管3'突出端有助于靶向Srs2,但在优化条件下,平头DNA底物也能被该蛋白解开。通过加入单链DNA结合因子复制蛋白A,Srs2解开具有长双链区域的解旋酶底物的能力得到增强。