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The AAA + ATPase TorsinA polymerizes into hollow helical tubes with 8.5 subunits per turn

机译:AAA + ATPase TorsinA聚合成空心螺旋管每匝有8.5个亚基

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摘要

TorsinA is an ER-resident AAA + ATPase, whose deletion of glutamate E303 results in the genetic neuromuscular disease primary dystonia. TorsinA is an unusual AAA + ATPase that needs an external activator. Also, it likely does not thread a peptide substrate through a narrow central channel, in contrast to its closest structural homologs. Here, we examined the oligomerization of TorsinA to get closer to a molecular understanding of its still enigmatic function. We observe TorsinA to form helical filaments, which we analyzed by cryo-electron microscopy using helical reconstruction. The 4.4 Å structure reveals long hollow tubes with a helical periodicity of 8.5 subunits per turn, and an inner channel of ~ 4 nm diameter. We further show that the protein is able to induce tubulation of membranes in vitro, an observation that may reflect an entirely new characteristic of AAA + ATPases. We discuss the implications of these observations for TorsinA function.
机译:TorsinA是一种驻留于ER的AAA + ATPase,其谷氨酸E303的缺失导致遗传性神经肌肉疾病原发性肌张力障碍。 TorsinA是一种不常见的AAA + ATPase,需要外部激活剂。而且,与其最接近的结构同源物相比,它可能不会使肽底物穿过狭窄的中央通道。在这里,我们检查了TorsinA的低聚反应,以更深入地了解其仍神秘的功能。我们观察到TorsinA形成螺旋状细丝,我们通过使用螺旋重建的低温电子显微镜对其进行了分析。 4.4Å的结构显示出长空心管,其螺旋周期为每圈8.5个亚基,内部通道的直径约为4 nm。我们进一步表明,该蛋白能够在体外诱导膜的小管形成,这一观察结果可能反映了AAA + ATPase的全新特征。我们讨论了这些观察结果对TorsinA功能的影响。

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