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Crystal Structure of the Virulence Gene Activator AphA from Vibrio cholerae Reveals It Is a Novel Member of the Winged Helix Transcription Factor Superfamily

机译:霍乱弧菌毒力基因激活剂AphA的晶体结构揭示了它是翅螺旋转录因子超家族的新型成员。

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摘要

AphA is a member of a new and largely uncharacterized family of transcriptional activators that is required for initiating virulence gene expression in Vibrio cholerae, the causative agent of the frequently fatal epidemic diarrheal disease cholera. AphA activates transcription by an unusual mechanism that appears to involve a direct interaction with the LysR-type regulator AphB at the tcpPH promoter. As a first step toward understanding the molecular basis for tcpPH activation by AphA and AphB, we have determined the crystal structure of AphA to 2.2 Å resolution. AphA is a dimer with an N-terminal winged helix DNA binding domain that is architecturally similar to that of the MarR family of transcriptional regulators. Unlike this family, however, AphA has a unique C-terminal antiparallel coiled coil domain that serves as its primary dimerization interface. AphA monomers are highly unstable by themselves and form a linked topology, requiring the protein to partially unfold to form the dimer. The structure of AphA also provides insights into how it cooperates with AphB to activate transcription, most likely by forming a heterotetrameric complex at the tcpPH promoter.
机译:AphA是一个新的,很大程度上未鉴定的转录激活因子家族的成员,该家族是在霍乱弧菌(通常是致命的流行性腹泻病霍乱的致病因子)中启动毒力基因表达所必需的。 AphA通过异常机制激活转录,该机制似乎与tcpPH启动子上的LysR型调节子AphB直接相互作用。作为了解AphA和AphB激活tcpPH的分子基础的第一步,我们确定了AphA的晶体结构达到2.2Å分辨率。 AphA是具有N末端带翼螺旋DNA结合结构域的二聚体,在结构上与MarR家族的转录调节因子相似。但是,与该家族不同,AphA具有独特的C端反平行卷曲螺旋结构域,用作其主要的二聚化界面。 AphA单体本身非常不稳定,并形成连锁拓扑,需要蛋白质部分展开才能形成二聚体。 AphA的结构还提供了有关它如何与AphB协同激活转录的见解,很可能是在tcpPH启动子上形成了异四聚体复合物。

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