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DNA环的修复涉及DNA错配和核苷酸切除修复蛋白。

Repair of DNA loops involves DNA-mismatch and nucleotide-excision repair proteins.

作者信息

Kirkpatrick D T, Petes T D

机构信息

Department of Biology, Curriculum in Genetics and Molecular Biology, University of North Carolina at Chapel Hill, 27599-3280, USA.

出版信息

Nature. 1997 Jun 26;387(6636):929-31. doi: 10.1038/43225.

Abstract

A number of enzymes recognize and repair DNA lesions. The DNA-mismatch repair system corrects base-base mismatches and small loops, whereas the nucleotide-excision repair system removes pyrimidine dimers and other helix-distorting lesions. DNA molecules with mismatches or loops can arise as a consequence of heteroduplex formation during meiotic recombination. In the yeast Saccharomyces cerevisiae, repair of mismatches results in gene conversion or restoration, and failure to repair the mismatch results in post-meiotic segregation (PMS). The ratio of gene-conversion to PMS events reflects the efficiency of DNA repair. By examining the PMS patterns in yeast strains heterozygous for a mutant allele with a 26-base-pair insertion, we find that the repair of 26-base loops involves Msh2 (a DNA-mismatch repair protein) and Rad1 (a protein required for nucleotide-excision repair).

摘要

许多酶能够识别并修复DNA损伤。DNA错配修复系统可纠正碱基与碱基之间的错配以及小环,而核苷酸切除修复系统则能去除嘧啶二聚体和其他扭曲螺旋结构的损伤。错配或环状的DNA分子可能是减数分裂重组过程中异源双链形成的结果。在酿酒酵母中,错配修复会导致基因转换或恢复,而未能修复错配则会导致减数分裂后分离(PMS)。基因转换与PMS事件的比例反映了DNA修复的效率。通过检查携带26个碱基对插入的突变等位基因的杂合酵母菌株中的PMS模式,我们发现26个碱基环的修复涉及Msh2(一种DNA错配修复蛋白)和Rad1(核苷酸切除修复所需的一种蛋白)。

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