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EF-Tu dynamics during pre-translocation complex formation: EF-Tu·GDP exits the ribosome via two different pathways

机译:易位复合物形成过程中的EF-Tu动力学:EF-Tu·GDP通过两种不同的途径离开核糖体

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摘要

The G-protein EF-Tu, which undergoes a major conformational change when EF-Tu·GTP is converted to EF-Tu·GDP, forms part of an aminoacyl(aa)-tRNA·EF-Tu·GTP ternary complex (TC) that accelerates the binding of aa-tRNA to the ribosome during peptide elongation. Such binding, placing a portion of EF-Tu in contact with the GTPase Associated Center (GAC), is followed by GTP hydrolysis and Pi release, and results in formation of a pretranslocation (PRE) complex. Although tRNA movement through the ribosome during PRE complex formation has been extensively studied, comparatively little is known about the dynamics of EF-Tu interaction with either the ribosome or aa-tRNA. Here we examine these dynamics, utilizing ensemble and single molecule assays employing fluorescent labeled derivatives of EF-Tu, tRNA, and the ribosome to measure changes in either FRET efficiency or fluorescence intensity during PRE complex formation. Our results indicate that ribosome-bound EF-Tu separates from the GAC prior to its full separation from aa-tRNA, and suggest that EF-Tu·GDP dissociates from the ribosome by two different pathways. These pathways correspond to either reversible EF-Tu·GDP dissociation from the ribosome prior to the major conformational change in EF-Tu that follows GTP hydrolysis, or irreversible dissociation after or concomitant with this conformational change.
机译:当EF-Tu·GTP转换为EF-Tu·GDP时,G蛋白EF-Tu发生主要构象变化,它形成氨酰基(aa)-tRNA·EF-Tu·GTP三元复合物(TC)的一部分在肽延长过程中加速aa-tRNA与核糖体的结合。此类结合将一部分EF-Tu与GTPase关联中心(GAC)接触,然后进行GTP水解和Pi释放,并导致形成易位(PRE)复合物。尽管已经广泛研究了在PRE复合物形成过程中tRNA在核糖体中的运动,但对EF-Tu与核糖体或aa-tRNA相互作用的动力学了解甚少。在这里,我们使用集合体和单分子测定法检查这些动力学,采用荧光标记的EF-Tu,tRNA和核糖体衍生物,以测量PRE复合物形成过程中FRET效率或荧光强度的变化。我们的研究结果表明,与核糖体结合的EF-Tu在完全从aa-tRNA分离之前已与GAC分离,并表明EF-Tu·GDP通过两种不同的途径与核糖体解离。这些途径对应于GTP水解后EF-Tu的主要构象变化之前,从核糖体可逆的EF-Tu·GDP解离,或此构象变化后或伴随的不可逆解离。

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