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辐射诱导的酿酒酵母染色体畸变:DNA修复途径的影响

Radiation-induced chromosome aberrations in Saccharomyces cerevisiae: influence of DNA repair pathways.

作者信息

Friedl A A, Kiechle M, Fellerhoff B, Eckardt-Schupp F

机构信息

GSF-Forschungszentrum für Umwelt und Gesundheit, Institut für Strahlenbiologie, Oberschleissheim, Germany.

出版信息

Genetics. 1998 Mar;148(3):975-88. doi: 10.1093/genetics/148.3.975.

Abstract

Radiation-induced chromosome aberrations, particularly exchange-type aberrations, are thought to result from misrepair of DNA double-strand breaks. The relationship between individual pathways of break repair and aberration formation is not clear. By electrophoretic karyotyping of single-cell clones derived from irradiated cells, we have analyzed the induction of stable aberrations in haploid yeast cells mutated for the RAD52 gene, the RAD54 gene, the HDF1(= YKU70) gene, or combinations thereof. We found low and comparable frequencies of aberrational events in wildtype and hdf1 mutants, and assume that in these strains most of the survivors descended from cells that were in G2 phase during irradiation and therefore able to repair breaks by homologous recombination between sister chromatids. In the rad52 and the rad54 strains, enhanced formation of aberrations, mostly exchange-type aberrations, was detected, demonstrating the misrepair activity of a rejoining mechanism other than homologous recombination. No aberration was found in the rad52 hdf1 double mutant, and the frequency in the rad54 hdf1 mutant was very low. Hence, misrepair resulting in exchange-type aberrations depends largely on the presence of Hdf1, a component of the nonhomologous end-joining pathway in yeast.

摘要

辐射诱导的染色体畸变,尤其是交换型畸变,被认为是由DNA双链断裂的错误修复导致的。单个断裂修复途径与畸变形成之间的关系尚不清楚。通过对来自受辐照细胞的单细胞克隆进行电泳核型分析,我们分析了RAD52基因、RAD54基因、HDF1(=YKU70)基因或其组合发生突变的单倍体酵母细胞中稳定畸变的诱导情况。我们在野生型和hdf1突变体中发现了低频率且相当的畸变事件,并推测在这些菌株中,大多数存活细胞来自于辐照期间处于G2期的细胞,因此能够通过姐妹染色单体之间的同源重组修复断裂。在rad52和rad54菌株中,检测到畸变的形成增加,主要是交换型畸变,这证明了除同源重组之外的一种重新连接机制的错误修复活性。在rad52 hdf1双突变体中未发现畸变,rad^{54} hdf1突变体中的频率非常低。因此,导致交换型畸变的错误修复很大程度上取决于Hdf1的存在,Hdf1是酵母中非同源末端连接途径的一个组成部分。

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