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Conversion-Type and Restoration-Type Repair of DNA Mismatches Formed During Meiotic Recombination in Saccharomyces cerevisiae

机译:酿酒酵母减数分裂重组过程中形成的DNA不匹配的转换类型和恢复类型修复。

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Meiotic recombination in yeast is associated with heteroduplex formation. Heteroduplexes formed between nonidentical DNA strands contain DNA mismatches, and most DNA mismatches in wild-type strains are efficiently corrected. Although some patterns of mismatch correction result in non-Mendelian segregation of the heterozygous marker (gene conversion), one predicted pattern of correction (restoration-type repair) results in normal Mendelian segregation. Using a yeast strain in which a marker leading to a well-repaired mismatch is flanked by markers that lead to poorly repaired mismatches, we present direct evidence for restoration-type repair in yeast. In addition, we find that the frequency of tetrads with conversion-type repair is higher for a marker at the 5′ end of the HIS4 gene than for a marker in the middle of the gene. These results suggest that the ratio of conversion-type to restoration-type repair may be important in generating gradients of gene conversion (polarity gradients).
机译:酵母中的减数分裂重组与异源双链体形成有关。在不相同的DNA链之间形成的异源双链体包含DNA错配,并且可以有效地纠正野生型菌株中的大多数DNA错配。尽管某些失配校正模式会导致杂合标记的非孟德尔分离(基因转换),但一种预测的校正模式(恢复型修复)会导致正常的孟德尔分离。使用一种酵母菌株,其中导致良好修复的错配的标记与导致修复不良的错配的标记侧接,我们为酵母中的修复类型修复提供了直接证据。此外,我们发现,在HIS4基因5'端的标记具有转化型修复的四联体的频率高于在基因中间的标记。这些结果表明,转化型修复与修复型修复的比例在产生基因转化梯度(极性梯度)中可能很重要。

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