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The crystal structure of the third signal-recognition particle GTPase FlhF reveals a homodimer with bound GTP

机译:第三信号识别颗粒GTPase FlhF的晶体结构揭示了结合GTP的同型二聚体

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Flagella are well characterized as the organelles of locomotion and allow bacteria to react to environmental changes. The assembly of flagella is a multistep process and relies on a complex type III export machinery located in the cytoplasmic membrane. The FlhF protein is essential for the placement and assembly of polar flagella and has been classified as a signal-recognition particle (SRP)-type GTPase. SRP GTPases appeared early in evolution and form a unique subfamily within the guanine nucleotide binding proteins with only three members: the signal sequence-binding protein SRP54, the SRP receptor FtsY, and FlhF. We report the crystal structures of FlhF from Bacillus subtilis in complex with GTP and GMPPNP. FlhF shares SRP GTPase-specific features such as the presence of an N-terminal α-helical domain and the I-box insertion. It forms a symmetric homodimer sequestering a composite active site that contains two head-to-tail arranged nucleotides similar to the heterodimeric SRP-targeting complex. However, significant differences to the GTPases of SRP and the SRP receptor include the formation of a stable homodimer with GTP as well as severe modifications and even the absence of motifs involved in regulation of the other two SRP GTPases. Our results provide insights into SRP GTPases and their roles in two fundamentally different protein-targeting routes that both rely on efficient protein delivery to a secretion channel.
机译:鞭毛被很好地描述为运动的细胞器,并允许细菌对环境变化做出反应。鞭毛的组装是一个多步骤过程,并依赖于位于细胞质膜中的复杂的III型输出机器。 FlhF蛋白对于极性鞭毛的放置和组装至关重要,已被分类为信号识别颗粒(SRP)型GTPase。 SRP GTPases出现在进化的早期,并在鸟嘌呤核苷酸结合蛋白内形成一个独特的亚家族,只有三个成员:信号序列结合蛋白SRP54,SRP受体FtsY和FlhF。我们报告了与GTP和GMPPNP复杂的枯草芽孢杆菌FlhF的晶体结构。 FlhF具有SRP GTPase特有的功能,例如存在N末端α-螺旋结构域和I-box插入。它形成对称的同型二聚体,隔离复合活性位点,该活性位点包含两个头尾排列的核苷酸,类似于异二聚体SRP靶向复合物。但是,与SRP和SRP受体的GTPases的显着差异包括形成具有GTP的稳定同型二聚体,以及进行严重修饰,甚至不存在涉及其他两个SRP GTPases调控的基序。我们的结果提供了有关SRP GTPases及其在两种根本不同的蛋白质靶向途径中的作用的见解,它们均依赖于有效地将蛋白质递送至分泌通道。

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