首页> 外文期刊>Nucleic Acids Research >Identification of proteins of Escherichia coli and Saccharomyces cerevisiae that specifically bind to C/C mismatches in DNA.
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Identification of proteins of Escherichia coli and Saccharomyces cerevisiae that specifically bind to C/C mismatches in DNA.

机译:鉴定与DNA中的C / C错配特异性结合的大肠杆菌和啤酒酵母蛋白。

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The pathways leading to G:C-->C:G transversions and their repair mechanisms remain uncertain. C/C and G/G mismatches arising during DNA replication are a potential source of G:C-->C:G transversions. The Escherichia coli mutHLS mismatch repair pathway efficiently corrects G/G mismatches, whereas C/C mismatches are a poor substrate. Escherichia coli must have a more specific repair pathway to correct C/C mismatches. In this study, we performed gel-shift assays to identify C/C mismatch-binding proteins in cell extracts of E. COLI: By testing heteroduplex DNA (34mers) containing C/C mismatches, two specific band shifts were generated in the gels. The band shifts were due to mismatch-specific binding of proteins present in the extracts. Cell extracts of a mutant strain defective in MutM protein did not produce a low-mobility complex. Purified MutM protein bound efficiently to the C/C mismatch-containing heteroduplex to produce the low-mobility complex. The second protein, which produced a high-mobility complex with the C/C mismatches, was purified to homogeneity, and the amino acid sequence revealed that this protein was the FabA protein of E.COLI: The high-mobility complex was not formed in cell extracts of a fabA mutant. From these results it is possible that MutM and FabA proteins are components of repair pathways for C/C mismatches in E.COLI: Furthermore, we found that Saccharomyces cerevisiae OGG1 protein, a functional homolog of E.COLI: MutM protein, could specifically bind to the C/C mismatches in DNA.
机译:导致G:C-> C:G转化的途径及其修复机制仍然不确定。 DNA复制期间发生的C / C和G / G错配是G:C-> C:G转化的潜在来源。大肠杆菌mutHLS错配修复途径可有效纠正G / G错配,而C / C错配是较差的底物。大肠杆菌必须具有更具体的修复途径才能纠正C / C错配。在这项研究中,我们进行了凝胶位移分析,以鉴定大肠杆菌细胞提取物中的C / C错配结合蛋白。通过测试含有C / C错配的异源双链DNA(34mers),在凝胶中产生了两个特定的带移。带移是由于提取物中存在的蛋白质的错配特异性结合所致。 MutM蛋白缺陷的突变菌株的细胞提取物未产生低迁移率复合物。纯化的MutM蛋白与含C / C错配的异源双链体有效结合,产生低迁移率复合物。产生具有C / C错配的高迁移率复合物的第二种蛋白被纯化至均一,氨基酸序列显示该蛋白是大肠杆菌的FabA蛋白:在C.COLI中未形成高迁移率复合物。 fabA突变体的细胞提取物。从这些结果来看,MutM和FabA蛋白可能是E.COLI中C / C错配的修复途径的组成部分:此外,我们发现酿酒酵母OGG1蛋白(E.COLI:MutM蛋白的功能同源物)可以特异性结合DNA中C / C错配的原因。

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