首页> 美国卫生研究院文献>Nucleic Acids Research >The Staphylococcus aureus pSK41 plasmid-encoded ArtA protein is a master regulator of plasmid transmission genes and contains a RHH motif used in alternate DNA-binding modes
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The Staphylococcus aureus pSK41 plasmid-encoded ArtA protein is a master regulator of plasmid transmission genes and contains a RHH motif used in alternate DNA-binding modes

机译:金黄色葡萄球菌pSK41质粒编码的ArtA蛋白是质粒传递基因的主调节子并包含用于其他DNA结合模式的RHH基序

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摘要

Plasmids harbored by Staphylococcus aureus are a major contributor to the spread of bacterial multi-drug resistance. Plasmid conjugation and partition are critical to the dissemination and inheritance of such plasmids. Here, we demonstrate that the ArtA protein encoded by the S. aureus multi-resistance plasmid pSK41 is a global transcriptional regulator of pSK41 genes, including those involved in conjugation and segregation. ArtA shows no sequence homology to any structurally characterized DNA-binding protein. To elucidate the mechanism by which it specifically recognizes its DNA site, we obtained the structure of ArtA bound to its cognate operator, ACATGACATG. The structure reveals that ArtA is representative of a new family of ribbon–helix–helix (RHH) DNA-binding proteins that contain extended, N-terminal basic motifs. Strikingly, unlike most well-studied RHH proteins ArtA binds its cognate operators as a dimer. However, we demonstrate that it is also able to recognize an atypical operator site by binding as a dimer-of-dimers and the extended N-terminal regions of ArtA were shown to be essential for this dimer-of-dimer binding mode. Thus, these data indicate that ArtA is a master regulator of genes critical for both horizontal and vertical transmission of pSK41 and that it can recognize DNA utilizing alternate binding modes.
机译:金黄色葡萄球菌携带的质粒是细菌多药耐药性传播的主要因素。质粒的缀合和分配对于此类质粒的传播和遗传至关重要。在这里,我们证明了由金黄色葡萄球菌多抗性质粒pSK41编码的ArtA蛋白是pSK41基因的全局转录调节因子,包括那些参与缀合和分离的基因。 ArtA与任何结构表征的DNA结合蛋白均无序列同源性。为了阐明其特异性识别其DNA位点的机制,我们获得了与其同源操纵子ACATGACATG结合的ArtA结构。结构表明ArtA代表了带状-螺旋-螺旋(RHH)DNA结合蛋白新家族的代表,该家族包含扩展的N端基本基序。令人惊讶的是,与大多数经过深入研究的RHH蛋白不同,ArtA将其同源操纵子结合为二聚体。然而,我们证明它也能够通过结合作为二聚体的二聚体来识别非典型的操纵子位点,并且显示ArtA的扩展N端区域对于这种二聚体的二聚体结合模式至关重要。因此,这些数据表明ArtA是对pSK41的水平和垂直传播都至关重要的基因的主要调节子,并且它可以利用其他结合方式识别DNA。

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