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Nucleotides and Substrates Trigger the Dynamics of the Toc34 GTPase Homodimer Involved in Chloroplast Preprotein Translocation

机译:核苷酸和底物触发参与叶绿体前蛋白移位的Toc34 GTPase Homodimer的动力学。

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摘要

GTPases are molecular switches that control numerous crucial cellular processes. Unlike bona fide GTPases, which are regulated by intramolecular structural transitions, the less well studied GADGTPases are activated by nucleotide-dependent dimerization. A member of this family is the translocase of the outer envelope membrane of chloroplast Toc34 involved in regulation of preprotein import. The GTPase cycle of Toc34 is considered a major circuit of translocation regulation. Contrary to expectations, previous studies yielded only marginal structural changes of dimeric Toc34 in response to different nucleotide loads. Referencing PELDOR and FRET single-molecule and bulk experiments, we describe a nucleotide-dependent transition of the dimer flexibility from a tight GDP- to a flexible GTP-loaded state. Substrate binding induces an opening of the GDP-loaded dimer. Thus, the structural dynamics of bona fide GTPases induced by GTP hydrolysis is replaced by substrate-dependent dimer flexibility, which likely represents a general regulatory mode for dimerizing GTPases.
机译:GTPases是控制许多关键细胞过程的分子开关。与受分子内结构转变调节的真正的GTPases不同,研究较少的GADGTPases通过核苷酸依赖性二聚作用被激活。该家族的成员是叶绿体Toc34外壳膜的转位酶,参与调节前蛋白的导入。 Toc34的GTPase循环被认为是易位调节的主要电路。与预期相反,先前的研究仅产生了二聚体Toc34响应不同核苷酸负载的边际结构变化。参考PELDOR和FRET单分子和本体实验,我们描述了二聚体柔性从紧密的GDP到柔性GTP加载状态的核苷酸依赖性转变。底物的结合导致了加载有GDP的二聚体的打开。因此,由GTP水解诱导的真正的GTPases的结构动力学被底物依赖性的二聚体柔性所取代,这可能代表了使GTPases二聚化的一般调控模式。

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