Thorneley R N, Cornish-Bowden A
Biochem J. 1977 Aug 1;165(2):255-62. doi: 10.1042/bj1650255.
The effects of MgADP and MgATP on the kinetics of a pre-steady-state electron-transfer reaction and on the steady-state kinetics of H2 evulution for nitrogenase proteins of K. pneumoniae were studied. MgADP was a competitive inhibitor of MgATP in the MgATP-induced electron transfer from the Fe-protein to the Mo-Fe-protein. A dissociation constant K'i = 20 micron was determined for MgADP. The release of MgADP or a coupled conformation change in the Fe-protein of K.pneumoniae occurred with a rate comparable with that of electron transfer, k approximately 2 X 10(2)S-1. Neither homotropic nor heterotropic interactions involving MgATP and MgADP were observed for this reaction. Steady-state kinetic data for H2 evolution exhibited heterotropic effects between MgADP and MgATP. The data have been fitted to symmetry and sequential-type models involving conformation changes in two identical subunits. The data suggest that the enzyme can bind up to molecules of either MgATP or MgADP, but is unable to bind both nucleotides simultaneously. The control of H2 evolution by the MgATP/MgADP ratio is not at the level of electron transfer between the Fe- and Mo-Fe-proteins.
研究了MgADP和MgATP对肺炎克雷伯氏菌固氮酶蛋白预稳态电子转移反应动力学以及H₂ 析出稳态动力学的影响。在MgATP诱导的从铁蛋白到钼铁蛋白的电子转移过程中,MgADP是MgATP的竞争性抑制剂。测定了MgADP的解离常数K'i = 20微摩尔。MgADP的释放或肺炎克雷伯氏菌铁蛋白中的偶联构象变化发生的速率与电子转移速率相当,k约为2×10²秒⁻¹。对于该反应,未观察到涉及MgATP和MgADP的同促或异促相互作用。H₂ 析出的稳态动力学数据显示MgADP和MgATP之间存在异促效应。数据已拟合到涉及两个相同亚基构象变化的对称和顺序型模型。数据表明该酶最多可结合MgATP或MgADP分子,但不能同时结合两种核苷酸。MgATP/MgADP比值对H₂ 析出的控制并非在铁蛋白和钼铁蛋白之间的电子转移水平。