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首页> 外文期刊>Journal of Molecular Biology >Crystal structures of the ATPase subunit of the glucose ABC transporter from Sulfolobus solfataricus: nucleotide-free and nucleotide-bound conformations.
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Crystal structures of the ATPase subunit of the glucose ABC transporter from Sulfolobus solfataricus: nucleotide-free and nucleotide-bound conformations.

机译:来自Sulfolobus solfataricus的葡萄糖ABC转运蛋白ATPase亚基的晶体结构:无核苷酸和核苷酸结合的构象。

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摘要

The ABC-ATPase GlcV energizes a binding protein-dependent ABC transporter that mediates glucose uptake in Sulfolobus solfataricus. Here, we report high-resolution crystal structures of GlcV in different states along its catalytic cycle: distinct monomeric nucleotide-free states and monomeric complexes with ADP-Mg(2+) as a product-bound state, and with AMPPNP-Mg(2+) as an ATP-like bound state. The structure of GlcV consists of a typical ABC-ATPase domain, comprising two subdomains, connected by a linker region to a C-terminal domain of unknown function. Comparisons of the nucleotide-free and nucleotide-bound structures of GlcV reveal re-orientations of the ABCalpha subdomain and the C-terminal domain relative to the ABCalpha/beta subdomain, and switch-like rearrangements in the P-loop and Q-loop regions. Additionally, large conformational differences are observed between the GlcV structures and those of other ABC-ATPases, further emphasizing the inherent flexibility of these proteins. Notably, a comparison of the monomeric AMPPNP-Mg(2+)-bound GlcV structure with that of the dimeric ATP-Na(+)-bound LolD-E171Q mutant reveals a +/-20 degrees rigid body re-orientation of the ABCalpha subdomain relative to the ABCalpha/beta subdomain, accompanied by a local conformational difference in the Q-loop. We propose that these differences represent conformational changes that may have a role in the mechanism of energy-transduction and/or allosteric control of the ABC-ATPase activity in bacterial importers.
机译:ABC-ATPase GlcV激发结合蛋白依赖性ABC转运蛋白,介导Sulfolobus solfataricus中的葡萄糖摄取。在这里,我们报告沿其催化周期在不同状态的GlcV的高分辨率晶体结构:独特的无单体核苷酸状态和单体配合物与ADP-Mg(2+)作为产品结合状态,并与AMPPNP-Mg(2) +)作为类似ATP的结合状态。 GlcV的结构由典型的ABC-ATP酶结构域组成,该结构域包含两个亚结构域,通过连接子区域连接至功能未知的C端结构域。 GlcV的无核苷酸和核苷酸结合结构的比较显示ABCalpha子域和C末端域相对于ABCalpha / beta子域的重新定向,以及P环和Q环区域的开关样重排。另外,在GlcV结构与其他ABC-ATPase的构象差异上观察到较大的构象差异,进一步强调了这些蛋白质的固有柔性。值得注意的是,单体AMPPNP-Mg(2+)结合的GlcV结构与二聚体ATP-Na(+)结合的LolD-E171Q突变体的比较显示ABCalpha的+/- 20度刚体重新定向子域相对于ABCalpha /β子域,并伴随Q环中的局部构象差异。我们建议这些差异代表构象变化,可能在细菌进口商中的能量传导和/或ABC-ATPase活性的变构控制机制中起作用。

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