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Enzymatic properties of the Caenorhabditis elegans Dna2 endonuclease/helicase and a species-specific interaction between RPA and Dna2

机译:秀丽隐杆线虫Dna2内切核酸酶/解旋酶的酶学性质以及RPA和Dna2之间的物种特异性相互作用

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In both budding and fission yeasts, a null mutation of the DNA2 gene is lethal. In contrast, a null mutation of Caenorhabditis elegans dna2(+) causes a delayed lethality, allowing survival of some mutant C. elegans adults to F2 generation. In order to understand reasons for this difference in requirement of Dna2 between these organisms, we examined the enzymatic properties of the recombinant C. elegans Dna2 (CeDna2) and its interaction with replication-protein A (RPA) from various sources. Like budding yeast Dna2, CeDna2 possesses DNA-dependent ATPase, helicase and endonuclease activities. The specific activities of both ATPase and endonuclease activities of the CeDna2 were considerably higher than the yeast Dna2 (similar to 10- and 20-fold, respectively). CeDna2 endonuclease efficiently degraded a short 50 single-stranded DNA tail (< 10 nt) that was hardly cleaved by ScDna2. Both endonuclease and helicase activities of CeDna2 were stimulated by CeRPA, but not by human or yeast RPA, demonstrating a species-specific interaction between Dna2 and RPA. These and other enzymatic properties of CeDna2 described in this paper may shed light on the observation that C. elegans is less stringently dependent on Dna2 for its viability than Saccharomyces cerevisiae. We propose that flaps generated by DNA polymerase delta-mediated displacement DNA synthesis are mostly short in C. elegans eukaryotes, and hence less dependent on Dna2 for viability.
机译:在发芽酵母和裂变酵母中,DNA2基因的无效突变都是致命的。相反,秀丽隐杆线虫dna2(+)的无效突变会导致致死性延迟,从而使某些突变秀丽隐杆线虫成虫存活至F2代。为了了解这些生物之间对Dna2需求差异的原因,我们检查了重组秀丽隐杆线虫Dna2(CeDna2)的酶学性质及其与多种来源的复制蛋白A(RPA)的相互作用。像发芽酵母Dna2一样,CeDna2具有依赖DNA的ATPase,解旋酶和核酸内切酶活性。 CeDna2的ATP酶和核酸内切酶的比活性均明显高于酵母Dna2(分别约为10倍和20倍)。 CeDna2核酸内切酶可有效降解难以被ScDna2切割的短50条单链DNA尾巴(<10 nt)。 CeDna2的核酸内切酶和解旋酶活性均受CeRPA刺激,但不受人或酵母RPA刺激,表明Dna2和RPA之间存在物种特异性相互作用。本文所述的CeDna2的这些和其他酶学性质可能表明,秀丽隐杆线虫的生存能力较酿酒酵母更不严格地依赖于Dna2。我们建议由线虫真核生物中DNA聚合酶δ介导的置换DNA合成产生的皮瓣大多较短,因此对Dna2的生存力依赖性较小。

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