首页> 外文期刊>Biochimica et Biophysica Acta. Protein Structure and Molecular Enzymology >Binding of GTP and GDP induces a significant conformational change in the GTPase domain of Ffh, a bacterial homologue of the SRP 54 kDa subunit
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Binding of GTP and GDP induces a significant conformational change in the GTPase domain of Ffh, a bacterial homologue of the SRP 54 kDa subunit

机译:GTP和GDP的结合在Ffh的GTPase域中诱导了显着的构象变化,Ffh是SRP 54 kDa亚基的细菌同源物

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摘要

The bacterial Ffh protein is homologous to the SRP54 subunit of the signal recognition particle. Ffh plays a key role in the targeting of proteins to the membrane and it is composed of a N-terminal domain (N), a middle GTPase (G) domain and a C-terminal M domain which has binding sites for SRP RNA and signal peptide. The GTP binding and hydrolysis of Ffh is critical to its function. We have used protease digestion to probe the conformation of the Mycoplasma mycoides Ffh N + G domain. In the absence of nucleotide the protein was comparatively sensitive to protease cleavage and we identified sites particularly prone to cleavage in a region near the C-terminus of the GTPase domain. However, in the presence of GTPγS or GDP this region is stabilized and the protein adopts a more ordered structure. The pattern of cleavage with GTPγS was indistinguishable from that when GDP was bound, indicating that the conformation of the nucleotide-free form is distinct from that when either GTPγS or GDP is bound to the protein. The possible functional role of this significant conformational change is discussed.
机译:细菌Ffh蛋白与信号识别颗粒的SRP54亚基同源。 Ffh在蛋白质靶向膜中起关键作用,它由一个N末端结构域(N),一个中间GTPase(G)结构域和一个C末端M结构域组成,该结构域具有SRP RNA和信号的结合位点肽。 Ffh的GTP结合和水解对其功能至关重要。我们已经使用蛋白酶消化来探查支原体Ffh N + G结构域的构象。在没有核苷酸的情况下,该蛋白质对蛋白酶裂解比较敏感,我们在靠近GTPase结构域C端的区域鉴定了特别易于裂解的位点。但是,在存在GTPγS或GDP的情况下,该区域是稳定的,蛋白质采用更有序的结构。 GTPγS的切割方式与结合GDP时的切割方式没有区别,这表明无核苷酸形式的构象与结合GTPγS或GDP的蛋白质时不同。讨论了这种重大构象变化的可能功能作用。

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