首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Properties of a mutant recA-encoded protein reveal a possible role for Escherichia coli recF-encoded protein in genetic recombination.
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Properties of a mutant recA-encoded protein reveal a possible role for Escherichia coli recF-encoded protein in genetic recombination.

机译:突变的recA编码蛋白的性质揭示了大肠杆菌recF编码蛋白在基因重组中的可能作用。

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摘要

A mutation partially suppressing the UV sensitivity caused by recF143 in a uvrA6 background was located at codon 37 of recA where GTG (valine) became ATG (methionine). This mutation, originally named srf-803, was renamed recA803. Little if any suppression of the recF143 defect in UV induction of a lexA regulon promoter was detected. This led to the hypothesis that a defect in recombination repair of UV damage was suppressed by recA803. The mutant RecA protein (RecA803) was purified and compared with wild-type protein (RecA+) as a catalyst of formation of joint molecules. Under suboptimal conditions, RecA803 produces both a higher rate of formation and a higher yield of joint molecules. The suboptimal conditions tested included addition of single-stranded DNA binding protein to single-stranded DNA prior to addition of RecA. We hypothesize that the ability of RecA803 to overcome interference by single-stranded DNA binding protein is the property that allows recA803 to suppress partially the deficiency in repair caused by recF mutations in the uvrA6 background. Implications of this hypothesis for the function of RecF protein in recombination are discussed.
机译:在uvrA6背景中,由recF143引起的部分抑制紫外线敏感性的突变位于recA的密码子37,其中GTG(缬氨酸)变为ATG(蛋氨酸)。此突变最初名为srf-803,被重命名为recA803。在lexA regulon启动子的紫外线诱导中几乎没有检测到recF143缺陷的抑制。这导致了一个假设,即recA803可抑制紫外线损伤的重组修复缺陷。纯化突变的RecA蛋白(RecA803),并与野生型蛋白(RecA +)进行比较,以作为形成关节分子的催化剂。在次优条件下,RecA803产生更高的形成速率和更高的联合分子产量。测试的次优条件包括在添加RecA之前将单链DNA结合蛋白添加到单链DNA中。我们假设RecA803克服单链DNA结合蛋白干扰的能力是允许recA803部分抑制uvrA6背景中recF突变引起的修复缺陷的特性。讨论了该假设对RecF蛋白在重组中的功能的影响。

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