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Construction and characterization of mismatch-containing circular DNA molecules competent for assessment of nick-directed human mismatch repair in vitro

机译:含错配的环状DNA分子的构建和表征,可用于体外评估切口定向的人错配修复

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The ability of cell-free extracts to correct DNA mismatches has been demonstrated in both prokaryotes and eukaryotes. Such an assay requires a template containing both a mismatch and a strand discrimination signal, and the multi-step construction process can be technically difficult. We have developed a three-step procedure for preparing DNA heteroduplexes containing a site-specific nick. The mismatch composition, sequence context, distance to the strand signal, and the means for assessing repair in each strand are adjustable features built into a synthetic oligonucleotide. Controlled ligation events involving three of the four DNA strands incorporate the oligonucleotide into a circular template and generate the repair-directing nick. Mismatch correction in either strand of a prototype G·T mismatch was achieved by placing a nick 10–40 bp away from the targeted base. This proximity of nick and mismatch represents a setting where repair has not been well characterized, but the presence of a nick was shown to be essential, as was the MSH2/MSH6 heterodimer, although low levels of repair occurred in extract defective in each protein. All repair events were inhibited by a peptide that interacts with proliferating cell nuclear antigen and inhibits both mismatch repair and long-patch replication.
机译:在原核生物和真核生物中都证明了无细胞提取物纠正DNA错配的能力。这种测定需要同时包含错配和链识别信号的模板,并且多步骤构建过程在技术上可能很困难。我们已经开发了一个三步过程来制备包含一个位点特异性缺口的DNA异源双链体。错配组成,序列背景,到链信号的距离以及用于评估每条链中修复的手段是内置于合成寡核苷酸中的可调节特征。涉及四条DNA链中三条的受控连接事件将寡核苷酸并入环状模板中,并产生修复导向切口。原型G·T错配的任一链中的错配校正是通过将一个缺口距目标碱基10–40 bp来实现的。缺口和错配的这种接近表示修复的特征尚未得到很好的表征,但是已证明缺口的存在是必不可少的,MSH2 / MSH6异二聚体也是如此,尽管每种蛋白质缺陷提取物中的修复水平较低。所有修复事件均由与增殖细胞核抗原相互作用并抑制错配修复和长补片复制的肽抑制。

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