Maier T, Jacobi A, Sauter M, Böck A
Lehrstuhl für Mikrobiologie, Universität München, Germany.
J Bacteriol. 1993 Feb;175(3):630-5. doi: 10.1128/jb.175.3.630-635.1993.
The products of the hyp operon genes are essential for the formation of catalytically active hydrogenases in Escherichia coli. At least one of these auxiliary proteins, HYPB, appears to be involved in nickel liganding to the hydrogenase apoprotein, since mutations in hypB can be phenotypically suppressed by high nickel concentrations in the medium (R. Waugh and D. H. Boxer, Biochimie 68:157-166, 1986). To approach the identification of the specific function of HYPB, we overexpressed the hypB gene and purified and characterized the gene product. HYPB is a homodimer of 31.6-kDa subunits, and it binds guanine nucleotides, with a Kd for GDP of 1.2 microM. The protein displays a low level of GTPase activity, with a kcat of 0.17 min-1. The apparent Km for GTP, as measured in the GTP hydrolysis reaction, was determined to be 4 microM. A chromatography system was established to measure nickel insertion into hydrogenase 3 from E. coli and to determine the effects of lesions in hypB. Nickel appears to be associated only with the processed large subunit of hydrogenase 3 in the wild type, and hypB mutants accumulate the precursor form of this subunit, which is devoid of nickel. The results are discussed in terms of a model in which HYPB is involved in nickel donation to the hydrogenase apoprotein and in which GTP hydrolysis is thought to reverse the interaction between either HYPB or another nickel-binding protein and the hydrogenase apoprotein after the nickel has been released.
hyp操纵子基因的产物对于大肠杆菌中具有催化活性的氢化酶的形成至关重要。这些辅助蛋白中至少有一种,即HYPB,似乎参与了镍与氢化酶脱辅基蛋白的配位,因为hypB中的突变可以被培养基中的高镍浓度表型抑制(R. Waugh和D. H. Boxer,《生物化学》68:157 - 166,1986)。为了确定HYPB的具体功能,我们过量表达了hypB基因,并对基因产物进行了纯化和表征。HYPB是由31.6 kDa亚基组成的同型二聚体,它结合鸟嘌呤核苷酸,对GDP的解离常数Kd为1.2 μM。该蛋白显示出低水平的GTP酶活性,催化常数kcat为0.17 min⁻¹。在GTP水解反应中测得的GTP的表观米氏常数Km为4 μM。建立了一种色谱系统来测量镍插入大肠杆菌氢化酶3中的情况,并确定hypB损伤的影响。在野生型中,镍似乎仅与氢化酶3的加工后的大亚基相关,而hypB突变体积累了该亚基的前体形式,其不含镍。根据一个模型对结果进行了讨论,在该模型中,HYPB参与向氢化酶脱辅基蛋白提供镍,并且在镍释放后,GTP水解被认为会逆转HYPB或另一种镍结合蛋白与氢化酶脱辅基蛋白之间的相互作用。