首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Molecular characterization of Bacillus pasteurii UreE, a metal-binding chaperone for the assembly of the urease active site
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Molecular characterization of Bacillus pasteurii UreE, a metal-binding chaperone for the assembly of the urease active site

机译:巴氏芽孢杆菌UreE的分子表征,一种用于结合脲酶活性位点的金属结合伴侣

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摘要

The present study describes the cloning, isolation, and thorough biochemical characterization of UreE from Bacillus pasteurii, a novel protein putatively involved in the transport of Ni in the urease assembly process. A DNA fragment of the B. pasteurii urease operon, containing all four accessory genes (ureE, ureF, ureG, and ureD) required for the incorporation of Ni ions into the active site of urease, was cloned, sequenced, and analyzed. B. pasteurii ureE was cloned, and the UreE protein (BpUreE) was over-expressed and purified to homogeneity. The identity of the recombinant protein was determined by N- and C-terminal sequencing and by mass spectrometry. BpUreE has a chain length of 147 amino acids, and features a pI value of 4.7. As isolated, BpUreE contains one Zn(II) ion per dimer, while no Ni(II) is present, as shown by mass spectrometry and atomic absorption spectroscopy. BpUreE behaves as a dimer independently of the presence of Zn(II), as shown by gel filtration and mass spectrometry. Paramagnetic NMR spectroscopy on concentrated (2 mM) UreE solutions reveals a one Ni atom per tetramer stoichiometry, with the Ni(II) ion bound to histidines in an octahedral coordination environment. BpUreE has a high sequence similarity with UreE proteins isolated from different biological sources while no sequence homology is observed with proteins belonging to different classes. In particular, BpUreE is most similar to UreE from Bacillus halodurans (55% identity). A multiple sequence alignment reveals the presence of four strictly conserved residues (Leu55, Gly97, Asn98, His100; BpUreE numbering), in addition to position 115, conservatively occupied by an Asp or a Glu residue. Several secondary structure elements, including a 242L娄力娄娄力?"ferredoxin-like" motif, are highly conserved throughout the UreE sequences. Electronic supplementary material to this paper can be obtained by using the Springer Link server located at http://dx.doi.org/10.1007/s00775-002-0341-7.
机译:本研究描述了巴氏芽孢杆菌的UreE的克隆,分离和全面的生化特性,这是一种在尿素酶组装过程中可能参与Ni转运的新型蛋白质。克隆,测序和分析了巴斯德氏芽孢杆菌脲酶操纵子的DNA片段,其中包含将Ni离子掺入脲酶活性位点所需的所有四个辅助基因(ureE,ureF,ureG和ureD)。克隆巴斯德毕赤酵母ureE,过表达UreE蛋白(BpUreE)并将其纯化至均质。重组蛋白的身份通过N端和C端测序以及质谱法确定。 BpUreE的链长为147个氨基酸,pI值为4.7。分离后,BpUreE的每个二聚体包含一个Zn(II)离子,而没有Ni(II)存在,如质谱和原子吸收光谱法所示。如凝胶过滤和质谱所示,BpUreE的行为独立于Zn(II)的二聚体。浓缩(2 mM)的UreE溶液的顺磁NMR光谱显示每个四聚体化学计量一个Ni原子,且Ni(II)离子在八面体配位环境中与组氨酸结合。 BpUreE与从不同生物学来源分离的UreE蛋白具有高度的序列相似性,而与属于不同类别的蛋白则没有序列同源性。特别是,BpUreE与来自嗜盐芽孢杆菌的UreE最相似(55%的同一性)。多重序列比对揭示除了位置115之外,保守地被Asp或Glu残基占据的四个严格保守的残基(Leu55,Gly97,Asn98,His100; BpUreE编号)的存在。在整个UreE序列中高度保守的几个二级结构元件,包括242L娄力娄娄力?“铁氧还蛋白样”基序。可以使用位于http://dx.doi.org/10.1007/s00775-002-0341-7的Springer Link服务器获得本文的电子补充材料。

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