Venkatesan Ranga N, Hsu Jessica J, Lawrence Nicole A, Preston Bradley D, Loeb Lawrence A
Department of Pathology, University of Washington, Seattle, 98195-7705, USA.
J Biol Chem. 2006 Feb 17;281(7):4486-94. doi: 10.1074/jbc.M510245200. Epub 2005 Dec 12.
Eukaryotic DNA polymerase (Pol) delta replicates chromosomal DNA and is also involved in DNA repair and genetic recombination. Motif A in Pol delta, containing the sequence DXXXLYPSI, includes a catalytically essential aspartic acid as well as other conserved residues of unknown function. Here, we used site-directed mutagenesis to create all 19 amino acid substitutions for the conserved Leu(612) in Motif A of Saccharomyces cerevisiae Pol delta. We show that substitutions at Leu(612) differentially affect viability, sensitivity to genotoxic agents, cell cycle progression, and replication fidelity. The eight viable mutants contained Ile, Val, Thr, Met, Phe, Lys, Asn, or Gly substitutions. Individual substitutions varied greatly in the nature and extent of attendant phenotypic deficiencies, exhibiting mutation rates that ranged from near wild type to a 37-fold increase. The L612M mutant exhibited a 7-fold elevation of mutation rate but essentially no detectable effects on other phenotypes monitored; the L612T mutant showed a nearly wild type mutation rate together with marked hypersensitivity to genotoxic agents; and the L612G and L612N strains exhibited relatively high mutation rates and severe deficits overall. We compare our results with those for homologous substitutions in prokaryotic and eukaryotic DNA polymerases and discuss the implications of our findings for the role of Leu(612) in replication fidelity.
真核生物DNA聚合酶(Pol)δ负责复制染色体DNA,同时也参与DNA修复和基因重组。Pol δ中的基序A包含序列DXXXLYPSI,其中含有一个催化必需的天冬氨酸以及其他功能未知的保守残基。在这里,我们使用定点诱变技术对酿酒酵母Pol δ基序A中保守的Leu(612)进行了所有19种氨基酸替换。我们发现Leu(612)位点的替换对细胞活力、对基因毒性剂的敏感性、细胞周期进程和复制保真度有不同程度的影响。八个可存活的突变体分别含有Ile、Val、Thr、Met、Phe、Lys、Asn或Gly替换。各个替换在伴随的表型缺陷的性质和程度上差异很大,突变率范围从接近野生型到增加37倍。L612M突变体的突变率升高了7倍,但对监测的其他表型基本没有可检测到的影响;L612T突变体的突变率接近野生型,同时对基因毒性剂表现出明显的超敏反应;L612G和L612N菌株总体上表现出相对较高的突变率和严重缺陷。我们将我们的结果与原核生物和真核生物DNA聚合酶中同源替换的结果进行了比较,并讨论了我们的发现对Leu(612)在复制保真度中作用的意义。