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Ku80缺陷型xrs突变体的分子与生化特性

Molecular and biochemical characterization of xrs mutants defective in Ku80.

作者信息

Singleton B K, Priestley A, Steingrimsdottir H, Gell D, Blunt T, Jackson S P, Lehmann A R, Jeggo P A

机构信息

MRC Cell Mutation Unit, University of Sussex, Brighton, United Kingdom.

出版信息

Mol Cell Biol. 1997 Mar;17(3):1264-73. doi: 10.1128/MCB.17.3.1264.

DOI:10.1128/MCB.17.3.1264
PMID:9032253
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC231851/
Abstract

The gene product defective in radiosensitive CHO mutants belonging to ionizing radiation complementation group 5, which includes the extensively studied xrs mutants, has recently been identified as Ku80, a subunit of the Ku protein and a component of DNA-dependent protein kinase (DNA-PK). Several group 5 mutants, including xrs-5 and -6, lack double-stranded DNA end-binding and DNA-PK activities. In this study, we examined additional xrs mutants at the molecular and biochemical levels. All mutants examined have low or undetectable levels of Ku70 and Ku80 protein, end-binding, and DNA-PK activities. Only one mutant, xrs-6, has Ku80 transcript levels detectable by Northern hybridization, but Ku80 mRNA was detectable by reverse transcription-PCR in most other mutants. Two mutants, xrs-4 and -6, have altered Ku80 transcripts resulting from mutational changes in the genomic Ku80 sequence affecting RNA splicing, indicating that the defects in these mutants lie in the Ku80 gene rather than a gene controlling its expression. Neither of these two mutants has detectable wild-type Ku80 transcript. Since the mutation in both xrs-4 and xrs-6 cells results in severely truncated Ku80 protein, both are likely candidates to be null mutants. Azacytidine-induced revertants of xrs-4 and -6 carried both wild-type and mutant transcripts. The results with these revertants strongly support our model proposed earlier, that CHO-K1 cells carry a copy of the Ku80 gene (XRCC5) silenced by hypermethylation. Site-directed mutagenesis studies indicate that previously proposed ATP-binding and phosphorylation sites are not required for Ku80 activity, whereas N-terminal deletions of more than the first seven amino acids result in severe loss of activities.

摘要

属于电离辐射互补组5的辐射敏感型中国仓鼠卵巢(CHO)突变体中存在缺陷的基因产物,其中包括经过广泛研究的xrs突变体,最近已被鉴定为Ku80,它是Ku蛋白的一个亚基,也是DNA依赖性蛋白激酶(DNA-PK)的一个组成部分。包括xrs-5和-6在内的几个第5组突变体缺乏双链DNA末端结合活性和DNA-PK活性。在本研究中,我们在分子和生化水平上检测了其他xrs突变体。所有检测的突变体的Ku70和Ku80蛋白水平、末端结合活性和DNA-PK活性都很低或检测不到。只有一个突变体xrs-6,其Ku80转录水平可通过Northern杂交检测到,但在大多数其他突变体中,通过逆转录PCR可检测到Ku80 mRNA。两个突变体xrs-4和-6,由于基因组Ku80序列中的突变改变影响RNA剪接,导致Ku80转录本发生改变,这表明这些突变体的缺陷在于Ku80基因而非控制其表达的基因。这两个突变体都没有可检测到的野生型Ku80转录本。由于xrs-4和xrs-6细胞中的突变都导致Ku80蛋白严重截短,因此两者都可能是无效突变体的候选者。氮杂胞苷诱导的xrs-4和-6回复突变体同时携带野生型和突变型转录本。这些回复突变体的结果有力地支持了我们先前提出的模型,即CHO-K1细胞携带一个因高甲基化而沉默的Ku80基因(XRCC5)拷贝。定点诱变研究表明,先前提出的ATP结合和磷酸化位点对于Ku80活性并非必需,而N端缺失超过前七个氨基酸会导致活性严重丧失。

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