首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Identification of a Coiled Coil in Werner Syndrome Protein That Facilitates Multimerization and Promotes Exonuclease Processivity
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Identification of a Coiled Coil in Werner Syndrome Protein That Facilitates Multimerization and Promotes Exonuclease Processivity

机译:Werner综合征蛋白中的螺旋线圈的鉴定该螺旋线圈有助于多聚化并促进核酸外切酶的合成能力

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摘要

Werner syndrome (WS) is a rare progeroid disorder characterized by genomic instability, increased cancer incidence, and early onset of a variety of aging pathologies. WS is unique among early aging syndromes in that affected individuals are developmentally normal, and phenotypic onset is in early adulthood. The protein defective in WS (WRN) is a member of the large RecQ family of helicases but is unique among this family in having an exonuclease. RecQ helicases form multimers, but the mechanism and consequence of multimerization remain incompletely defined. Here, we identify a novel heptad repeat coiled coil region between the WRN nuclease and helicase domains that facilitates multimerization of WRN. We mapped a novel and unique DNA-dependent protein kinase phosphorylation site proximal to the WRN multimerization region. However, phosphorylation at this site affected neither exonuclease activity nor multimeric state. We found that WRN nuclease is stimulated by DNA-dependent protein kinase independently of kinase activity or WRN nuclease multimeric status. In addition, WRN nuclease multimerization significantly increased nuclease processivity. We found that the novel WRN coiled coil domain is necessary for multimerization of the nuclease domain and sufficient to multimerize with full-length WRN in human cells. Importantly, correct homomultimerization is required for WRN function in vivo as overexpression of this multimerization domain caused increased sensitivity to camptothecin and 4-nitroquinoline 1-oxide similar to that in cells lacking functional WRN protein.
机译:Werner综合征(WS)是一种罕见的早衰症,其特征是基因组不稳定,癌症发病率增加以及各种衰老病理的早期发作。 WS在早期衰老综合征中是独特的,因为受影响的个体在发育上是正常的,并且表型发作是在成年早期。 WS中的蛋白质缺陷(WRN)是大型RecQ家族解旋酶的成员,但在该家族中具有核酸外切酶是独特的。 RecQ解旋酶形成多聚体,但多聚化的机理和结果仍未完全确定。在这里,我们确定WRN核酸酶和解旋酶域之间的一个新颖的七肽重复卷曲螺旋区域,有助于WRN的多聚化。我们绘制了一个新的和独特的DNA依赖性蛋白激酶磷酸化位点,靠近WRN多聚区。但是,该位点的磷酸化既不影响核酸外切酶活性也不影响多聚体状态。我们发现WRN核酸酶被DNA依赖性蛋白激酶刺激,与激酶活性或WRN核酸酶多聚体状态无关。此外,WRN核酸酶多聚显着提高了核酸酶的合成能力。我们发现,新颖的WRN卷曲螺旋结构域对于核酸酶结构域的多聚化是必需的,并且足以与人细胞中的全长WRN进行多聚化。重要的是,体内WRN功能需要正确的同源多聚化,因为这种多聚域的过度表达导致对喜树碱和4-硝基喹啉1氧化物的敏感性增加,类似于缺乏功能性WRN蛋白的细胞。

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