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首页> 外文期刊>Journal of bacteriology >Isolation and Characterization of Mutations in theEscherichia coli Regulatory Protein XapR
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Isolation and Characterization of Mutations in theEscherichia coli Regulatory Protein XapR

机译:大肠杆菌调节蛋白XapR中突变的分离和鉴定

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In this work, the LysR-type protein XapR has been subjected to a mutational analysis. XapR regulates the expression of xanthosine phosphorylase (XapA), a purine nucleoside phosphorylase inEscherichia coli. In the wild type, full expression of XapA requires both a functional XapR protein and the inducer xanthosine. Here we show that deoxyinosine can also function as an inducer in the wild type, although not to the same extent as xanthosine. We have isolated and characterized in detail the mutants that can be induced by other nucleosides as well as xanthosine. Sequencing of the mutants has revealed that two regions in XapR are important for correct interactions between the inducer and XapR. One region is defined by amino acids 104 and 132, and the other region, containing most of the isolated mutations, is found between amino acids 203 and 210. These regions, when modelled into the three-dimensional structure of CysB from Klebsiella aerogenes, are placed close together and are most probably directly involved in binding the inducer xanthosine.
机译:在这项工作中,对LysR型蛋白XapR进行了突变分析。 XapR调节黄嘌呤磷酸化酶(XapA)(一种嘌呤核苷磷酸化酶)在大肠杆菌中的表达。在野生型中,XapA的完整表达需要功能性XapR蛋白和诱导剂黄嘌呤核苷。在这里,我们显示脱氧肌苷也可以在野生型中起诱导剂的作用,尽管其程度与黄嘌呤苷不同。我们已经分离并详细表征了可被其他核苷以及黄嘌呤核苷诱导的突变体。突变体的测序表明,XapR中的两个区域对于诱导剂和XapR之间的正确相互作用非常重要。一个区域由氨基酸104和132定义,另一个区域包含大多数分离的突变,位于氨基酸203和210之间。将这些区域建模为来自 Klebsiella的CysB三维结构时,气孔并排放置,最有可能直接与诱导物黄嘌呤结合。

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