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Highly potent dUTPase inhibition by a bacterial repressor protein reveals a novel mechanism for gene expression control

机译:细菌阻遏蛋白对dUTPase的高效抑制揭示了基因表达控制的新机制

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Transfer of phage-related pathogenicity islands of Staphylococcus aureus (SaPI-s) was recently reported to be activated by helper phage dUTPases. This is a novel function for dUTPases otherwise involved in preservation of genomic integrity by sanitizing the dNTP pool. Here we investigated the molecular mechanism of the dUTPase-induced gene expression control using direct techniques. The expression of SaPI transfer initiating proteins is repressed by proteins called Stl. We found that Phi 11 helper phage dUTPase eliminates SaPIbov1 Stl binding to its cognate DNA by binding tightly to Stl protein. We also show that dUTPase enzymatic activity is strongly inhibited in the dUTPase: Stl complex and that the dUTPase: dUTP complex is inaccessible to the Stl repressor. Our results disprove the previously proposed G-protein-like mechanism of SaPI transfer activation. We propose that the transfer only occurs if dUTP is cleared from the nucleotide pool, a condition promoting genomic stability of the virulence elements.
机译:最近报道了噬菌体相关的金黄色葡萄球菌(SaPI-s)致病岛的转移被辅助噬菌体dUTPases激活。这对于dUTPases是一种新颖的功能,否则它会通过消毒dNTP库而参与基因组完整性的保存。在这里,我们研究了直接技术使用dUTPase诱导基因表达控制的分子机制。 SaPI转移启动蛋白的表达被称为Stl的蛋白抑制。我们发现,Phi 11辅助噬菌体dUTPase通过与Stl蛋白紧密结合,消除了SaPIbov1 Stl与其同源DNA的结合。我们还显示,dUTPase:Stl复合物中的dUTPase酶促活性受到强烈抑制,而Stl阻遏物无法进入dUTPase:dUTP复合物。我们的结果证明了先前提出的SaPI转移激活的G蛋白样机制。我们建议仅在从核苷酸库中清除dUTP的情况下才发生转移,这是促进毒力元件基因组稳定性的条件。

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