Weber J, Dunn S D, Senior A E
Department of Biochemistry and Biophysics, University of Rochester Medical Center, Rochester, New York 14642, USA.
J Biol Chem. 1999 Jul 2;274(27):19124-8. doi: 10.1074/jbc.274.27.19124.
The influence of the epsilon-subunit on the nucleotide binding affinities of the three catalytic sites of Escherichia coli F1-ATPase was investigated, using a genetically engineered Trp probe in the adenine-binding subdomain (beta-Trp-331). The interaction between epsilon and F1 was not affected by the mutation. Kd for binding of epsilon to betaY331W mutant F1 was approximately 1 nM, and epsilon inhibited ATPase activity by 90%. The only nucleotide binding affinities that showed significant differences in the epsilon-depleted and epsilon-replete forms of the enzyme were those for MgATP and MgADP at the high-affinity catalytic site 1. Kd1(MgATP) and Kd1(MgADP) were an order of magnitude higher in the absence of epsilon than in its presence. In contrast, the binding affinities for MgATP and MgADP at sites 2 and 3 were similar in the epsilon-depleted and epsilon-replete enzymes, as were the affinities at all three sites for free ATP and ADP. Comparison of MgATP binding and hydrolysis parameters showed that in the presence as well as the absence of epsilon, Km equals Kd3. Thus, in both cases, all three catalytic binding sites have to be occupied to obtain rapid (Vmax) MgATP hydrolysis rates.
利用腺嘌呤结合亚结构域(β-Trp-331)中的基因工程色氨酸探针,研究了ε亚基对大肠杆菌F1-ATP酶三个催化位点核苷酸结合亲和力的影响。ε与F1之间的相互作用不受该突变的影响。ε与βY331W突变体F1结合的解离常数(Kd)约为1 nM,且ε可使ATP酶活性抑制90%。在缺乏ε和富含ε的酶形式中,唯一显示出显著差异的核苷酸结合亲和力是高亲和力催化位点1处MgATP和MgADP的结合亲和力。在没有ε时,Kd1(MgATP)和Kd1(MgADP)比有ε时高一个数量级。相比之下,在缺乏ε和富含ε的酶中,位点2和位点3处MgATP和MgADP的结合亲和力相似,所有三个位点对游离ATP和ADP的亲和力也相似。MgATP结合和水解参数的比较表明,无论有无ε,米氏常数(Km)都等于解离常数3(Kd3)。因此,在这两种情况下,都必须占据所有三个催化结合位点才能获得快速的(最大反应速度Vmax)MgATP水解速率。