Löbau S, Weber J, Wilke-Mounts S, Senior A E
Department of Biochemistry, University of Rochester Medical Center, Rochester, New York 14642, USA.
J Biol Chem. 1997 Feb 7;272(6):3648-56. doi: 10.1074/jbc.272.6.3648.
Three critical residues, beta-Lys-155, beta-Asp-242, and beta-Glu-181, situated close to the gamma-phosphate of MgATP in F1-ATPase catalytic sites, were investigated. The mutations betaK155Q, betaD242N, and betaE181Q were each combined with the betaY331W mutation; the fluorescence signal of beta-Trp-331 was used to determine MgATP, MgADP, ATP, and ADP binding parameters for the three catalytic sites of the enzyme. The quantitative contribution of side chains to binding energy at all three catalytic sites was calculated. The following conclusions were made. The major functional interaction of beta-Lys-155 is with the gamma-phosphate of MgATP and is of primary importance at site 1 (the site of highest affinity) and site 2. Release of MgATP during oxidative phosphorylation requires conformational re-positioning of this residue. The major functional interaction of beta-Asp-242 is with the magnesium of the magnesium nucleotide at site 1; it has little or no influence at site 2 or 3. In steady-state turnover, the MgATP hydrolysis reaction occurs at site 1. beta-Glu-181 contributes little to nucleotide binding; its major catalytic effect derives apparently from a role in reaction chemistry per se. This work also emphasizes that nucleotide binding cooperativity shown by the three catalytic sites toward MgATP and MgADP is absolutely dependent on the presence of magnesium.
研究了位于F1 - ATP酶催化位点中靠近MgATP的γ - 磷酸基团的三个关键残基,即β - Lys - 155、β - Asp - 242和β - Glu - 181。将βK155Q、βD242N和βE181Q这三个突变分别与βY331W突变相结合;利用β - Trp - 331的荧光信号来确定该酶三个催化位点的MgATP、MgADP、ATP和ADP结合参数。计算了所有三个催化位点侧链对结合能的定量贡献。得出了以下结论。β - Lys - 155的主要功能相互作用是与MgATP的γ - 磷酸基团,并且在位点1(亲和力最高的位点)和位点2中至关重要。氧化磷酸化过程中MgATP的释放需要该残基进行构象重新定位。β - Asp - 242的主要功能相互作用是与位点1处镁核苷酸的镁;它在位点2或3几乎没有影响。在稳态周转中,MgATP水解反应在位点1发生。β - Glu - 181对核苷酸结合贡献很小;其主要催化作用显然源于其本身在反应化学中的作用。这项工作还强调了三个催化位点对MgATP和MgADP显示出的核苷酸结合协同性绝对依赖于镁的存在。