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Two conserved amino acids of juxtaposed domains of a ribosomal maturation protein CgtA sustain its optimal GTPase activity

机译:核糖体成熟蛋白CgtA并列结构域的两个保守氨基酸维持其最佳GTPase活性

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CgtA is a highly conserved ribosome binding protein involved in ribosome biogenesis and associated with stringent response. It is a 55 KDa GTPase protein consisting of GTPase, Obg and C-terminal domains. The function of the latter two domains was not clear and despite the importance, the mode of action of CgtA is still largely unknown. Knocking out of CgtA gene is lethal and mutations lead to growth, sporulation and developmental defects in bacteria. It was found that a growth defect and pinhole size colony morphology of Bacillus subtilis was associated with a Gly92Asp point mutation on the Obg domain of its CgtA protein, instead of its GTPase domain. CgtA is an important and essential protein of the deadly diarrhea causing bacteria Vibrio cholerae and in order to investigate the mode of action of the V. cholerae CgtA we have utilized this information. We measured the GTPase activity of V cholerae CgtA (CgtA(vc)) protein in the presence of purified ribosome. Our results showed 5-fold increased GTP hydrolysis activity compared to its intrinsic activity. Then we explored the GTPase activity of the mutated CgtA(vc) (Gly98Asp) located at the Obg domain, which reduced the GTP hydrolysis rate to half. The double point mutations (Gly98Asp, and Tyr194Gly) encompassing another conserved residue, Tyr194, located at the diagonally opposite position in the GTPase domain largely restored (about 82%) the reduced GTPase activity, revealing a fine-tuned inter-domain movement readily associated with the GTPase activity of CgtA and thus maintaining the proper functioning of the CgtA protein. (C) 2015 Elsevier Inc. All rights reserved.
机译:CgtA是一种高度保守的核糖体结合蛋白,参与核糖体的生物发生并与严格的反应有关。它是由KTPase,Obg和C端结构域组成的55 KDa GTPase蛋白。后两个域的功能尚不清楚,尽管很重要,但CgtA的作用方式仍是未知之数。敲除CgtA基因是致命的,突变导致细菌的生长,孢子形成和发育缺陷。发现枯草芽孢杆菌的生长缺陷和针孔大小菌落形态与CgtA蛋白的Obg结构域而不是其GTPase结构域的Gly92Asp点突变有关。 CgtA是引起细菌性霍乱的致命性腹泻的重要和必不可少的蛋白,为了研究霍乱弧菌CgtA的作用方式,我们利用了这一信息。我们在纯化的核糖体存在下测量了霍乱弧菌CgtA(CgtA(vc))蛋白的GTPase活性。我们的结果表明,相比其内在活性,GTP水解活性提高了5倍。然后,我们研究了位于Obg域的突变CgtA(vc)(Gly98Asp)的GTP酶活性,该活性将GTP水解速率降低了一半。位于GTPa​​se结构域对角线相对位置的另一个保守残基Tyr194的双点突变(Gly98Asp和Tyr194Gly)在很大程度上恢复了还原的GTPase活性(约占82%),表明微调的结构域间运动易于关联具有CgtA的GTPase活性,从而保持CgtA蛋白的正常功能。 (C)2015 Elsevier Inc.保留所有权利。

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