Kansau I, Guillain F, Thiberge J M, Labigne A
Unité de Pathogénie Bactérienne des Muqueuses, Institut Pasteur, INSERM U389, Paris, France.
Mol Microbiol. 1996 Dec;22(5):1013-23. doi: 10.1046/j.1365-2958.1996.01536.x.
Helicobacter pylori synthesizes a heat-shock protein of the GroES class. The gene encoding this protein (heat-shock protein A, HspA) was recently cloned and it was shown to be unique in structure. H. pylori HspA consists of two domains: the N-terminal domain (domain A) homologous with other GroES proteins, and a C-terminal domain (domain B) corresponding to 27 additional residues resembling a metal-binding domain. Various recombinant proteins consisting of the entire HspA polypeptide, the A domain, or the B domain were produced independently as proteins fused to maltose-binding protein (MBP). Comparison of the divalent cation binding properties of the various MBP and MBP-fused proteins allowed us to conclude that HspA binds nickel ions by means of its C-terminal domain. HspA exhibited a high and specific affinity for nickel ions in comparison with its affinity for other divalent cations (copper, zinc, cobalt). Equilibrium dialysis experiments revealed that MBP-HspA binds nickel ions with an apparent dissociation constant (Kd) of 1.8 microM and a stoichiometry of 1.9 ions per molecule. The analysis of the deduced HspA amino acid sequences encoded by 35 independent clinical isolates demonstrated the existence of two molecular variants of HspA, i.e. a major and a minor variant present in 89% and 11% of strains, respectively. The two variants differed from each other by the simultaneous substitution of seven amino acids within the B domain, whilst the A domain was highly conserved amongst all the HspA proteins (99-100% identity). On the basis of serological studies, the highly conserved A domain of HspA was found to be the immunodominant domain. Functional complementation experiments were performed to test the properties of the two HspA variants. When co-expressed together with the H. pylori urease gene cluster in Escherichia coli cells, the two HspA variant-encoding genes led to a fourfold increase in urease activity, demonstrating that HspA in H. pylori has a specialized function with regard to the nickel metalloenzyme urease.
幽门螺杆菌合成一种GroES类热休克蛋白。编码该蛋白的基因(热休克蛋白A,HspA)最近已被克隆,并且显示出结构独特。幽门螺杆菌HspA由两个结构域组成:与其他GroES蛋白同源的N端结构域(结构域A),以及对应于27个额外残基的C端结构域(结构域B),类似金属结合结构域。分别制备了由整个HspA多肽、A结构域或B结构域组成的各种重组蛋白,作为与麦芽糖结合蛋白(MBP)融合的蛋白。通过比较各种MBP和MBP融合蛋白的二价阳离子结合特性,我们得出结论,HspA通过其C端结构域结合镍离子。与对其他二价阳离子(铜、锌、钴)的亲和力相比,HspA对镍离子表现出高特异性亲和力。平衡透析实验表明,MBP-HspA结合镍离子的表观解离常数(Kd)为1.8微摩尔,化学计量比为每分子1.9个离子。对35个独立临床分离株编码的推导HspA氨基酸序列的分析表明,存在两种HspA分子变体,即主要变体和次要变体,分别存在于89%和11%的菌株中。这两种变体的区别在于B结构域内同时替换了七个氨基酸,而A结构域在所有HspA蛋白中高度保守(99-100%同一性)。基于血清学研究,发现HspA高度保守的A结构域是免疫显性结构域。进行了功能互补实验以测试两种HspA变体的特性。当与幽门螺杆菌脲酶基因簇在大肠杆菌细胞中共同表达时,两个编码HspA变体的基因使脲酶活性增加了四倍,表明幽门螺杆菌中的HspA对于镍金属酶脲酶具有特殊功能。