Tran H T, Gordenin D A, Resnick M A
Laboratory of Molecular Genetics, National Institute of Environmental Health Sciences, Research Triangle Park, North Carolina 27709, USA.
Genetics. 1996 Aug;143(4):1579-87. doi: 10.1093/genetics/143.4.1579.
We have investigated the effects of mismatch repair on 1-to 61-bp deletions in the yeast Saccharomyces cerevisiae. The deletions are likely to involve unpaired loop intermediates resulting from DNA polymerase slippage. The mutator effects of mutations in the DNA polymerase delta (POL3) gene and the recombinational repair RAD52 gene were studied in combination with mismatch repair defects. The pol3-t mutation increased up to 1000-fold the rate of extended (7-61 bp) but not of 1-bp deletions. In a rad52 null mutant only the 1-bp deletions were increased (12-fold). The mismatch repair mutations pms1, msh2 and msh3 did not affect 31- and 61-bp deletions in the pol3-t but increased the rates of 7- and 1-bp deletions. We propose that loops less than or equal to seven bases generated during replication are subject to mismatch repair by the PMS1, MSH2, MSH3 system and that in cannot act on loops > or = 31 bases. In contrast to the pol3-t, the enhancement of 1-bp deletions in a rad52 mutant is not altered by a pms1 mutation. Thus, mismatch repair appears to be specific to errors of DNA synthesis generated during semiconservative replication.
我们研究了错配修复对酿酒酵母中1至61个碱基对缺失的影响。这些缺失可能涉及DNA聚合酶滑动产生的未配对环中间体。结合错配修复缺陷,研究了DNA聚合酶δ(POL3)基因和重组修复RAD52基因中的突变的诱变效应。pol3-t突变使延伸型(7至61个碱基对)缺失的发生率增加了1000倍,但对1个碱基对的缺失没有影响。在rad52缺失突变体中,只有1个碱基对的缺失增加了(12倍)。错配修复突变pms1、msh2和msh3对pol3-t中的31和61个碱基对缺失没有影响,但增加了7和1个碱基对缺失的发生率。我们提出,复制过程中产生的小于或等于7个碱基的环会受到PMS1、MSH2、MSH3系统的错配修复,而该系统对大于或等于31个碱基的环不起作用。与pol3-t相反,rad52突变体中1个碱基对缺失的增强不受pms1突变的影响。因此,错配修复似乎对半保留复制过程中产生的DNA合成错误具有特异性。