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Targeted nucleotide repair of cyc1 mutations in Saccharomyces cerevisiae directed by modified single-stranded DNA oligonucleotides.

机译:通过修饰的单链DNA寡核苷酸指导啤酒酵母中cyc1突变的靶向核苷酸修复。

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摘要

Modified single-stranded DNA oligonucleotides have been used to direct base changes in the CYC1 gene of Saccharomyces cerevisiae. In this process, the oligonucleotide is believed to hybridize to the target site through the action of a DNA recombinase and, once bound, DNA repair enzymes act to excise the nucleotide, replace it, and revert the gene to wild-type status. Nucleotide exchange exhibits a strand bias as, in most cases, a higher level of base reversal appears in cells in which the oligonucleotide is designed to hybridize to the nontemplate strand. But, in one case, a higher level was observed when an oligonucleotide complementary to the transcribed strand was used. Mutant haploid and diploid strains are reverted to wild type at this locus with approximately the same frequency and all strains take up the oligonucleotide with approximately equal efficiency. Some repair preference for certain base mismatches was observed; for example, T/T and C/C mispairs exhibited the highest degree of reactivity. Finally, we demonstrate that proteins involved in DNA pairing can enhance the repair activity up to 22-fold, while others affect the reaction minimally. Taken together, these results confirm the importance and versatility of yeast as a model system to elucidate the factors regulating the frequency of nucleotide exchange directed by oligonucleotides.
机译:修饰的单链DNA寡核苷酸已用于指导酿酒酵母CYC1基因的碱基变化。在这个过程中,人们认为寡核苷酸通过DNA重组酶的作用与靶位点杂交,一旦结合,DNA修复酶就可以切除核苷酸,取代核苷酸,并将基因恢复为野生型。核苷酸交换表现出链偏向,因为在大多数情况下,在设计寡核苷酸可与非模板链杂交的细胞中出现了更高水平的碱基逆转。但是,在一种情况下,当使用与转录链互补的寡核苷酸时,观察到更高的水平。在该基因座处,突变单倍体和二倍体菌株以大约相同的频率回复到野生型,并且所有菌株以大约相等的效率吸收寡核苷酸。观察到某些碱基不匹配的修复偏好;例如,T / T和C / C错配对表现出最高的反应性。最后,我们证明了参与DNA配对的蛋白质可以将修复活性提高多达22倍,而其他蛋白质对反应的影响则最小。综上所述,这些结果证实了酵母作为阐明阐明寡核苷酸所指导的核苷酸交换频率的因素的模型系统的重要性和多功能性。

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