首页> 美国卫生研究院文献>Molecular and Cellular Biology >Hypersensitivity of Ku-Deficient Cells toward the DNA Topoisomerase II Inhibitor ICRF-193 Suggests a Novel Role for Ku Antigen during the G2 and M Phases of the Cell Cycle
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Hypersensitivity of Ku-Deficient Cells toward the DNA Topoisomerase II Inhibitor ICRF-193 Suggests a Novel Role for Ku Antigen during the G2 and M Phases of the Cell Cycle

机译:Ku缺乏细胞对DNA拓扑异构酶II抑制剂ICRF-193的超敏性表明Ku抗原在细胞周期的G2和M阶段具有新作用。

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摘要

Ku antigen is a heterodimer, comprised of 86- and 70-kDa subunits, which binds preferentially to free DNA ends. Ku is associated with a catalytic subunit of 450 kDa in the DNA-dependent protein kinase (DNA-PK), which plays a crucial role in DNA double-strand break (DSB) repair and V(D)J recombination of immunoglobulin and T-cell receptor genes. We now demonstrate that Ku86 (86-kDa subunit)-deficient Chinese hamster cell lines are hypersensitive to ICRF-193, a DNA topoisomerase II inhibitor that does not produce DSB in DNA. Mutant cells were blocked in G2 at drug doses which had no effect on wild-type cells. Moreover, bypass of this G2 block by caffeine revealed defective chromosome condensation in Ku86-deficient cells. The hypersensitivity of Ku86-deficient cells toward ICRF-193 was not due to impaired in vitro decatenation activity or altered levels of DNA topoisomerase IIα or -β. Rather, wild-type sensitivity was restored by transfection of a Ku86 expression plasmid into mutant cells. In contrast to cells deficient in the Ku86 subunit of DNA-PK, cells deficient in the catalytic subunit of the enzyme neither accumulated in G2/M nor displayed defective chromosome condensation at lower doses of ICRF-193 compared to wild-type cells. Our data suggests a novel role for Ku antigen in the G2 and M phases of the cell cycle, a role that is not related to its role in DNA-PK-dependent DNA repair.
机译:Ku抗原是一种异源二聚体,由86-kDa和70-kDa亚基组成,优先与游离DNA末端结合。 Ku与DNA依赖性蛋白激酶(DNA-PK)中的450 kDa催化亚基有关,在DNA双链断裂(DSB)修复以及免疫球蛋白和T-的V(D)J重组中起关键作用细胞受体基因。我们现在证明,Ku86(86-kDa亚基)缺陷的中国仓鼠细胞系对ICRF-193(一种在DNA中不产生DSB的DNA拓扑异构酶II抑制剂)过敏。在对野生型细胞无影响的药物剂量下,突变细胞被阻断在G2中。此外,咖啡因绕过该G2阻滞显示在Ku86缺陷型细胞中染色体凝集缺陷。 Ku86缺陷细胞对ICRF-193的超敏性不是由于体外脱活活性受损或DNA拓扑异构酶IIα或-β水平改变所致。而是,通过将Ku86表达质粒转染到突变细胞中来恢复野生型敏感性。与缺乏DNA-PK的Ku86亚基的细胞相反,与野生型细胞相比,在较低剂量的ICRF-193上,该酶的催化亚基缺乏的细胞既不聚集在G2 / M中,也不显示缺陷的染色体凝集。我们的数据表明,Ku抗原在细胞周期的G2和M期具有新作用,这一作用与其在DNA-PK依赖性DNA修复中的作用无关。

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