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人类沃纳解旋酶相互作用蛋白1(WRNIP1)作为DNA聚合酶δ的新型调节剂发挥作用。

Human Werner helicase interacting protein 1 (WRNIP1) functions as a novel modulator for DNA polymerase delta.

作者信息

Tsurimoto Toshiki, Shinozaki Ayako, Yano Masaki, Seki Masayuki, Enomoto Takemi

机构信息

Department of Biology, School of Sciences, Kyushu University, Fukuoka 812-8581, Japan.

出版信息

Genes Cells. 2005 Jan;10(1):13-22. doi: 10.1111/j.1365-2443.2004.00812.x.

Abstract

Human WRNIP1, a Werner DNA helicase interacting protein 1, was expressed in insect cells and E. coli. The purified protein behaved as a homo-oligomeric complex with a native molecular mass indicative of an octamer, and the complex copurified with an ATPase activity that was stimulated by double-stranded DNA ends. As suggested by genetic studies of budding yeast WRNIP1/Mgs1, the purified human WRNIP1 complex interacted physically with human DNA polymerase delta (pol delta), stimulating its DNA synthesis activity more than fivefold in the presence or absence of proliferating cell nuclear antigen. Analysis of reaction products demonstrated the stimulation to be partly due to an increased processivity of pol delta but more importantly to an increase in its initiation frequency. Addition of ATP to reactions partially suppressed stimulation by WRNIP1. Furthermore, a mutant WRNIP1 lacking ATPase activity could stimulate pol delta normally but was insensitive to suppression by ATP. These results indicate that WRNIP1 functions as a modulator for initiation or restart events during pol delta-mediated DNA synthesis and that its ATPase activity is utilized to sense DNA ends and to regulate the extent of stimulation.

摘要

人类WRNIP1,一种与沃纳DNA解旋酶相互作用的蛋白1,在昆虫细胞和大肠杆菌中表达。纯化后的蛋白表现为一种同源寡聚复合体,其天然分子量表明它是八聚体,并且该复合体与一种由双链DNA末端刺激的ATP酶活性一起共纯化。正如对芽殖酵母WRNIP1/Mgs1的遗传学研究所表明的那样,纯化后的人类WRNIP1复合体与人类DNA聚合酶δ(pol δ)发生物理相互作用,在有或没有增殖细胞核抗原的情况下,将其DNA合成活性提高了五倍多。对反应产物的分析表明,这种刺激部分归因于pol δ持续合成能力的增强,但更重要的是其起始频率的增加。向反应中添加ATP会部分抑制WRNIP1的刺激作用。此外,缺乏ATP酶活性的突变型WRNIP1能够正常刺激pol δ,但对ATP的抑制不敏感。这些结果表明,WRNIP1在pol δ介导的DNA合成过程中作为起始或重新起始事件的调节剂发挥作用,并且其ATP酶活性被用于感知DNA末端并调节刺激程度。

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