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首页> 外文期刊>Current Biology: CB >Role of a BRCT domain in the interaction of DNA ligase III-alpha with theDNA repair protein XRCC1
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Role of a BRCT domain in the interaction of DNA ligase III-alpha with theDNA repair protein XRCC1

机译:BRCT域在DNA连接酶III-α与DNA修复蛋白XRCC1相互作用中的作用

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摘要

The BRCT domain (for BRCA1 carboxyl terminus) is a protein motif of unknown function, comprising approximately 100 amino acids in five conserved blocks denoted A-E, BRCT domains are present in the tumour suppressor protein BRCA1 [1-3], and the domain is found in over 40 other proteins, defining a superfamily that includes DNA ligase III-alpha and the essential human DNA repair protein XRCC1, DNA ligase III-alpha and XRCC1 interact via their carboxyl termini, close to or within regions that contain a BRCT domain [4], To examine whether the primary role of the carboxy-terminal BRCT domain of XRCC1 (denoted BRCT II) is to mediate the interaction with DNA ligase III-alpha, we identified the regions of the domain that are required and sufficient for the interaction. An XRCC1 protein in which the conserved D-block tryptophan was disrupted by point mutation retained the ability to interact with DNA ligase III-alpha, so this tryptophan must mediate a different, although conserved, role. XRCC1 in which the weakly conserved C-block was mutated lost the ability to interact with DNA ligase III-alpha Moreover, 20 amino acids spanning the C block of BRCT II conferred full DNA ligase III-alpha binding activity upon an unrelated polypeptide. An XRCC1 protein in which this 20mer was deleted could not maintain normal levels of DNA ligase III-alpha in transfected rodent cells, a phenotype associated with defective repair [5]. In summary, these data demonstrate that a BRCT domain can mediate a biologically important protein-protein interaction, and support the existence of additional roles.
机译:BRCT结构域(用于BRCA1羧基末端)是一种功能未知的蛋白质基序,在五个保守的区块中表示为AE,包含约100个氨基酸,在肿瘤抑制蛋白BRCA1中存在BRCT结构域[1-3],发现了该结构域在40多种其他蛋白质中,定义了一个超家族,包括DNA连接酶III-alpha和必需的人类DNA修复蛋白XRCC1,DNA连接酶III-alpha和XRCC1通过其羧基末端相互作用,靠近或包含BRCT结构域[4] ],为了检查XRCC1的羧基末端BRCT结构域(称为BRCT II)的主要作用是否是介导与DNA连接酶III-α的相互作用,我们鉴定了该相互作用所必需和充分的结构域区域。 XRCC1蛋白中的保守D嵌段色氨酸被点突变破坏,该蛋白保留了与DNA连接酶III-α相互作用的能力,因此该色氨酸必须发挥不同的作用,尽管是保守的。 XRCC1中的保守性较弱的C嵌段发生了突变,失去了与DNA连接酶III-α相互作用的能力。此外,跨越BRCT II C嵌段的20个氨基酸赋予了不相关多肽完整的DNA连接酶III-α结合活性。缺失了这个20mer的XRCC1蛋白在转染的啮齿动物细胞中不能维持DNA连接酶III-α的正常水平,这种表型与修复缺陷有关[5]。总之,这些数据表明,BRCT结构域可以介导生物学上重要的蛋白质-蛋白质相互作用,并支持其他作用的存在。

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