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首页> 外文期刊>Journal of Molecular Biology >Dimerization of Crh by reversible 3D domain swapping induces structural adjustments to its monomeric homologue Hpr.
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Dimerization of Crh by reversible 3D domain swapping induces structural adjustments to its monomeric homologue Hpr.

机译:通过可逆3D域交换对Crh进行二聚,可对其单体同系物Hpr进行结构调整。

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摘要

The crystal structure of the regulatory protein Crh from Bacillus subtilis was solved at 1.8A resolution and showed an intertwined dimer formed by N-terminal beta1-strand swapping of two monomers. Comparison with the monomeric NMR structure of Crh revealed a domain swap induced conformational rearrangement of the putative interaction site with the repressor CcpA. The resulting conformation closely resembles that observed for the monomeric Crh homologue HPr, indicating that the Crh dimer is the active form binding to CcpA. An analogous dimer of HPr can be constructed without domain swapping, suggesting that HPr may dimerize upon binding to CcpA. Our data suggest that reversible 3D domain swapping of Crh might be an efficient regulatory mechanism to modulate its activity.
机译:来自枯草芽孢杆菌的调节蛋白Crh的晶体结构在1.8A分辨率下得到解析,并显示了由两个单体的N端β1链交换形成的缠结二聚体。与Crh的单体NMR结构进行比较后发现,域置换诱导了与阻遏物CcpA相互作用的假定位点的构象重排。所得构象与单体Crh同源物HPr观察到的构象非常相似,表明Crh二聚体是与CcpA结合的活性形式。无需域交换即可构建类似的HPr二聚体,这表明HPr在与CcpA结合后可能会二聚。我们的数据表明,Crh的可逆3D域交换可能是调节其活性的有效监管机制。

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