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Targeted gene repair directed by the chimeric RNA/DNA oligonucleotide in a mammalian cell-free extract

机译:嵌合RNA / DNA寡核苷酸在哺乳动物无细胞提取物中的靶向基因修复

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Chimeric oligonucleotides consisting of RNA and DNA residues have been shown to catalyze site-directed genetic alteration in mammalian cells both in vitro and in vivo. Since the frequency of these events appears to be logs higher than the rates of gene targeting, a process involving homologous recombination, we developed a system to study the mechanisms of chimera-directed gene conversion. Using a mammalian cell-free extract and a genetic readout in Escherichia coli, we find that point mutations and single base deletions can be corrected at frequencies of ~0.1% and 0.005%, respectively. The reaction depends on an accurately designed chimera and the presence of functional hMSH2 protein. The results of genetic and biochemical studies reported herein suggest that the process of mismatch repair functions in site-directed gene correction.
机译:已显示由RNA和DNA残基组成的嵌合寡核苷酸在体外和体内均可催化哺乳动物细胞中的定点遗传改变。由于这些事件的发生率似乎比基因靶向率高,这是一个涉及同源重组的过程,因此我们开发了一个系统来研究嵌合体定向基因转化的机制。使用哺乳动物无细胞提取物和大肠杆菌中的基因读数,我们发现点突变和单碱基缺失可以分别在〜0.1%和0.005%的频率处校正。该反应取决于精确设计的嵌合体和功能性hMSH2蛋白的存在。本文报道的遗传和生化研究结果表明,错配修复过程在定点基因校正中起作用。

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