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首页> 外文期刊>PLoS Biology >Structure of UreG/UreF/UreH Complex Reveals How Urease Accessory Proteins Facilitate Maturation of Helicobacter pylori Urease
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Structure of UreG/UreF/UreH Complex Reveals How Urease Accessory Proteins Facilitate Maturation of Helicobacter pylori Urease

机译:UreG / UreF / UreH复合物的结构揭示了尿素酶辅助蛋白如何促进幽门螺杆菌尿素酶的成熟

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Urease is a metalloenzyme essential for the survival of Helicobacter pylori in acidic gastric environment. Maturation of urease involves carbamylation of Lys219 and insertion of two nickel ions at its active site. This process requires GTP hydrolysis and the formation of a preactivation complex consisting of apo-urease and urease accessory proteins UreF, UreH, and UreG. UreF and UreH form a complex to recruit UreG, which is a SIMIBI class GTPase, to the preactivation complex. We report here the crystal structure of the UreG/UreF/UreH complex, which illustrates how UreF and UreH facilitate dimerization of UreG, and assembles its metal binding site by juxtaposing two invariant Cys66-Pro67-His68 metal binding motif at the interface to form the (UreG/UreF/UreH)2 complex. Interaction studies revealed that addition of nickel and GTP to the UreG/UreF/UreH complex releases a UreG dimer that binds a nickel ion at the dimeric interface. Substitution of Cys66 and His68 with alanine abolishes the formation of the nickel-charged UreG dimer. This nickel-charged UreG dimer can activate urease in vitro in the presence of the UreF/UreH complex. Static light scattering and atomic absorption spectroscopy measurements demonstrated that the nickel-charged UreG dimer, upon GTP hydrolysis, reverts to its monomeric form and releases nickel to urease. Based on our results, we propose a mechanism on how urease accessory proteins facilitate maturation of urease.
机译:脲酶是一种幽门螺杆菌在酸性胃环境中生存所必需的金属酶。脲酶的成熟涉及Lys219的氨基甲酸酯化和在其活性位点插入两个镍离子。此过程需要GTP水解并形成由脱辅酶和脲酶辅助蛋白UreF,UreH和UreG组成的预激活复合物。 UreF和UreH形成一个复合物,将SIMIBI类GTPase UreG募集到预激活复合物中。我们在这里报告了UreG / UreF / UreH复合物的晶体结构,该晶体结构说明了UreF和UreH如何促进UreG的二聚化,并通过在界面处并置两个不变的Cys66-Pro67-His68金属结合基序来组装UreG和UreH的金属结合位点,从而形成了(UreG / UreF / UreH)2复合体。相互作用研究表明,向UreG / UreF / UreH复合物中添加镍和GTP会释放UreG二聚体,该二聚体在二聚体界面处结合镍离子。用丙氨酸取代Cys66和His68可消除带镍的UreG二聚体的形成。在UreF / UreH复合物存在的情况下,这种带镍的UreG二聚体可以在体外激活尿素酶。静态光散射和原子吸收光谱法测量表明,在GTP水解后,带镍的UreG二聚体会还原为单体形式,并释放镍为脲酶。根据我们的结果,我们提出了一种关于脲酶辅助蛋白如何促进脲酶成熟的机制。

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