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Molecular and biochemical characterization of new X-ray-sensitive hamster cell mutants defective in Ku80.

机译:Ku80中新的对X射线敏感的仓鼠细胞突变体的分子和生化特征。

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摘要

Ku, a heterodimer of approximately 70 and approximately 80 kDa subunits, is a nuclear protein that binds to double-stranded DNA ends and is a component of the DNA-dependent protein kinase (DNA-PK). Cell lines defective in Ku80 belong to group XRCC5 of ionizing radiation-sensitive mutants. Five new independent Chinese hamster cell mutants, XR-V10B, XR-V11B, XR-V12B, XR-V13B and XR-V16B, that belong to this group were isolated. To shed light on the nature of the defect in Ku80, the molecular and biochemical characteristics of these mutants were examined. All mutants, except XR-V12B, express Ku80 mRNA, but no Ku80 protein could clearly be detected by immunoblot analysis in any of them. DNA sequence analysis of the Ku80 cDNA from these mutants showed a deletion of 252 bp in XR-V10B; a 6 bp deletion that results in a new amino acid residue at position 107 and the loss of two amino acid residues at positions 108 and 109 in XR-V11B; a missense mutation resulting in a substitution of Cys for Tyr at position 114 in XR-V13B; and two missense mutations in XR-V16B, resulting in a substitution of Met for Val at position 331 and Arg for Gly at position 354. All these mutations cause a similar, 5-7-fold, increase in X-ray sensitivity in comparison to wild-type cells, and a complete lack of DNA-end binding and DNA-PK activities. This indicates that all these mutations lead to loss of the Ku80 function due to instability of the defective protein.
机译:Ku是约70和80 kDa亚基的异二聚体,是一种核蛋白,与双链DNA末端结合,是DNA依赖性蛋白激酶(DNA-PK)的一个组成部分。 Ku80中有缺陷的细胞系属于电离辐射敏感突变体的XRCC5组。分离出属于该组的五个新的独立的中国仓鼠细胞突变体XR-V10B,XR-V11B,XR-V12B,XR-V13B和XR-V16B。为了阐明Ku80缺陷的性质,研究了这些突变体的分子和生化特征。除XR-V12B外,所有突变体均表达Ku80 mRNA,但通过免疫印迹分析无法清楚地检测出任何Ku80蛋白。来自这些突变体的Ku80 cDNA的DNA序列分析表明,XR-V10B中缺失了252 bp。 6bp的缺失,导致XR-V11B中107位的新氨基酸残基丢失,而108和109位的两个氨基酸残基丢失;一种错义突变,导致在XR-V13B的114位用Cys取代Tyr;和XR-V16B中的两个错义突变,导致在331位的Met替换Val,在354位置的Arg替换Arg。所有这些突变导致X射线敏感性相较于X射线敏感性增加了5-7倍野生型细胞,并且完全缺乏DNA末端结合和DNA-PK活性。这表明由于缺陷蛋白的不稳定性,所有这些突变均导致Ku80功能丧失。

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