首页> 外文期刊>Biochimica et Biophysica Acta. Protein Structure and Molecular Enzymology >Conformational change of the N-domain on formation of the complex between the GTPase domains of Thermus aquaticus Ffh and FtsY
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Conformational change of the N-domain on formation of the complex between the GTPase domains of Thermus aquaticus Ffh and FtsY

机译:N结构域的构象变化对水生栖热菌Ffh和FtsY的GTPase结构域形成复合物的影响

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The structural basis for the GTP-dependent co-translational targeting complex between the signal recognition particle (SRP) and its receptor is unknown. The complex has been shown to have unusual kinetics of formation, and association in vivo is likely to be dependent on catalysis by the SRP RNA. We have determined conditions for RNA-independent association of the 'NG' GTPase domains of the prokaryotic homologs of the SRP components, Ffh and FtsY, from Thermus aquaticus. Consistent with previous studies of the Escherichia coli proteins, the kinetics of association and dissociation are slow. The T. aquaticus FtsY is sensitive to an endogenous proteolytic activity that cleaves at two sites-the first in a lengthy linker peptide that spans the interface between the N and G domains, and the second near the N-terminus of the N domain of FtsY. Remarkably, this second cleavage occurs only on formation of the Ffh/FtsY complex. The change in protease sensitivity of this region, which is relatively unstructured in the FtsY but not in the Ffh NG domain, implies that it undergoes conformational change on formation of the complex between the two proteins. The N domain, therefore, participates in the interactions that mediate the GTP-dependent formation of the targeting complex.
机译:信号识别颗粒(SRP)及其受体之间GTP依赖的共翻译靶向复合物的结构基础是未知的。已显示该复合物具有异常的形成动力学,并且体内缔合可能取决于SRP RNA的催化作用。我们已经确定了水生栖热菌的SRP成分Ffh和FtsY的原核同源物'NG'GTPase域的RNA非依赖性结合的条件。与以前对大肠埃希氏菌蛋白质的研究一致,缔合和解离的动力学很慢。水生T. FtsY对在两个位点切割的内源蛋白水解活性敏感,第一个位点是长连接肽,其跨越N和G结构域之间的界面,第二个位点靠近FtsY的N结构域的N末端。 。值得注意的是,第二次切割仅在Ffh / FtsY复合物形成时发生。该区域的蛋白酶敏感性变化在FtsY中相对没有结构,但在Ffh NG域中相对没有结构化,这意味着它在两种蛋白之间形成复合物时会发生构象变化。因此,N结构域参与介导靶向复合物的GTP依赖性形成的相互作用。

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