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酿酒酵母核DNA双链断裂的修复及其遗传控制。

The repair of double-strand breaks in the nuclear DNA of Saccharomyces cerevisiae and its genetic control.

作者信息

Resnick M A, Martin P

出版信息

Mol Gen Genet. 1976 Jan 16;143(2):119-29. doi: 10.1007/BF00266917.

Abstract

With the use of neutral sucrose sedimentation techniques, the size of unirradiated nuclear DNA and the repair of double-strand breaks induced in it by ionizing radiation have been determined in both wild-type and homozygous rad52 diploids of the yeast Saccharomyces cerevisiae. The number average molecular weight of unirradiated DNA in these experiments is 3.0 X 10(8)+/-0.3 Daltons. Double-strand breaks are induced with a frequency of 0.58 X 10(-10) per Daltonkrad in the range of 25 to 100 krad. Since repair at low doses is observed in wild-type but not homozygous rad52 strains, the corresponding rad52 gene product is concluded to have a role in the repair process. Cycloheximide was also observed to inhibit repair to a limited extent indicating a requirement for protein synthesis. Based on the sensitivity of various mutants and the induction frequency of double-strand breaks, it is concluded that there are 1 to 2 double-strand breaks per lethal event in diploid cells incapable of repairing these breaks.

摘要

运用中性蔗糖沉降技术,已测定出酿酒酵母野生型和纯合rad52二倍体中未受辐照的核DNA的大小以及电离辐射在其中诱导产生的双链断裂的修复情况。在这些实验中,未受辐照DNA的数均分子量为3.0×10⁸±0.3道尔顿。在25至100千拉德的范围内,双链断裂的诱导频率为每道尔顿千拉德0.58×10⁻¹⁰。由于在野生型而非纯合rad52菌株中观察到低剂量下的修复情况,因此得出相应的rad52基因产物在修复过程中起作用的结论。还观察到环己酰亚胺在一定程度上抑制修复,这表明修复需要蛋白质合成。基于各种突变体的敏感性和双链断裂的诱导频率,得出在无法修复这些断裂的二倍体细胞中,每个致死事件有1至2个双链断裂的结论。

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