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幽门螺杆菌中脲酶成熟需要HypA的N端胺基进行镍连接。

Nickel Ligation of the N-Terminal Amine of HypA Is Required for Urease Maturation in Helicobacter pylori.

作者信息

Hu Heidi Q, Johnson Ryan C, Merrell D Scott, Maroney Michael J

机构信息

Department of Chemistry and Program of Molecular and Cellular Biology, University of Massachusetts Amherst , Amherst, Massachusetts 01003, United States.

Microbiology and Immunology, Uniformed Services University of the Health Sciences , Bethesda, Maryland 20814, United States.

出版信息

Biochemistry. 2017 Feb 28;56(8):1105-1116. doi: 10.1021/acs.biochem.6b00912. Epub 2017 Feb 17.

Abstract

The human pathogen Helicobacter pylori requires nickel for colonization of the acidic environment of the stomach. HypA, a Ni metallochaperone that is typically associated with hydrogenase maturation, is also required for urease maturation and acid survival of H. pylori. There are two proposed Ni site structures for HypA; one is a paramagnetic six-coordinate site characterized by X-ray absorption spectroscopy (XAS) in unmodified HypA, while another is a diamagnetic four-coordinate planar site characterized by solution nuclear magnetic resonance in an N-terminally modified HypA construct. To determine the role of the N-terminal amine in Ni binding of HypA, an N-terminal extension variant, L2*-HypA, in which a leucine residue was inserted into the second position of the amino acid sequence in the proposed Ni-binding motif, was characterized in vitro and in vivo. Structural characterization of the Ni site using XAS showed a coordination change from six-coordinate in wild-type HypA (WT-HypA) to five-coordinate pyramidal in L2*-HypA, which was accompanied by the loss of two N/O donor protein ligands and the addition of an exogenous bromide ligand from the buffer. The magnetic properties of the Ni sites in WT-HypA compared to those of the Ni sites in L2*-HypA confirmed that a spin-state change from high to low spin accompanied this change in structure. The L2*-HypA H. pylori strain was shown to be acid sensitive and deficient in urease activity in vivo. In vitro characterization showed that L2*-HypA did not disrupt the HypA-UreE interaction that is essential for urease maturation but was at least 20-fold weaker in Ni binding than WT-HypA. Characterization of the L2*-HypA variant clearly demonstrates that the N-terminal amine of HypA is involved in proper Ni coordination and is necessary for urease activity and acid survival.

摘要

人类病原体幽门螺杆菌在胃部酸性环境中定殖需要镍。HypA是一种镍金属伴侣蛋白,通常与氢化酶成熟相关,也是幽门螺杆菌脲酶成熟和耐酸性所必需的。关于HypA有两种提出的镍位点结构;一种是顺磁性六配位位点,在未修饰的HypA中通过X射线吸收光谱(XAS)表征,而另一种是抗磁性四配位平面位点,在N端修饰的HypA构建体中通过溶液核磁共振表征。为了确定N端胺在HypA镍结合中的作用,对一种N端延伸变体L2*-HypA进行了体外和体内表征,在该变体中,一个亮氨酸残基插入到所提出的镍结合基序氨基酸序列的第二个位置。使用XAS对镍位点进行结构表征表明,从野生型HypA(WT-HypA)中的六配位到L2*-HypA中的五配位金字塔形发生了配位变化,这伴随着两个N/O供体蛋白配体的丢失以及从缓冲液中添加了一个外源溴配体。与L2*-HypA中的镍位点相比,WT-HypA中镍位点的磁性特性证实,随着这种结构变化,自旋态从高自旋变为低自旋。L2*-HypA幽门螺杆菌菌株在体内表现出对酸敏感且脲酶活性缺陷。体外表征表明,L2*-HypA不会破坏脲酶成熟所必需的HypA-UreE相互作用,但镍结合能力比WT-HypA至少弱20倍。L2*-HypA变体的表征清楚地表明,HypA的N端胺参与了适当的镍配位,并且是脲酶活性和耐酸性所必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f50f/5540134/ea67cd57e942/nihms886590f1.jpg

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