Mensink R E, Haaker H
Department of Biochemistry, Agricultural University, Wageningen, The Netherlands.
Eur J Biochem. 1992 Sep 1;208(2):295-9. doi: 10.1111/j.1432-1033.1992.tb17186.x.
The temperature dependence of the pre-steady-state MgATP-dependent electron transfer from the MoFe protein to the Fe protein of the nitrogenase from Azotobacter vinelandii has been investigated between 6 degrees C and 31 degrees C by stopped-flow spectrophotometry. Below 14 degrees C, the data are consistent with a model in which interaction of MgATP with nitrogenase is fast and irreversible, and is followed by reversible electron transfer. From the extent and from the rate of the absorbance change, the rate constants for electron transfer from Fe protein to MoFe protein and of the reverse reaction were calculated. The direct rate constant increases with temperature (6-14 degrees C) from about 1 s-1 to about 26 s-1. The rate constant for the reverse reaction was found to be approximately 4 s-1 and invariant with the reaction temperature. Analysis of the data obtained in the temperature range between 6 degrees C and 12 degrees C within the framework of the transition-state theory show that electron transfer from the Fe protein to the MoFe protein occurs via a highly disordered transition state with activation parameters delta H(0) ++ = 289 kJ.mol-1 and delta S(0) ++ = 792 J.K-1.mol-1. The Eyring plot of the stopped-flow data displays an inflection point around 14 degrees C. From the stopped-flow data obtained between 18 degrees and 27 degrees C the activation parameters delta H(0) ++ and delta S(0) ++ for the reduction of the MoFe protein by Fe protein are calculated to be 90 kJ.mol-1 and 99 J.K-1.mol-1 respectively. A second inflection point in the Eyring plot could exist around 28 degrees C.
通过停流分光光度法,在6℃至31℃之间研究了棕色固氮菌固氮酶中,从钼铁蛋白到铁蛋白的预稳态MgATP依赖性电子转移的温度依赖性。在14℃以下,数据与以下模型一致:MgATP与固氮酶的相互作用快速且不可逆,随后是可逆的电子转移。根据吸光度变化的程度和速率,计算了从铁蛋白到钼铁蛋白的电子转移速率常数以及逆反应的速率常数。直接速率常数随温度(6 - 14℃)从约1 s⁻¹增加到约26 s⁻¹。发现逆反应的速率常数约为4 s⁻¹,且与反应温度无关。在过渡态理论框架内,对在6℃至12℃温度范围内获得的数据进行分析表明,从铁蛋白到钼铁蛋白的电子转移通过高度无序的过渡态发生,其活化参数ΔH(0)++ = 289 kJ·mol⁻¹和ΔS(0)++ = 792 J·K⁻¹·mol⁻¹。停流数据的艾林曲线在14℃左右显示出一个拐点。根据在18℃至27℃之间获得的停流数据,计算出铁蛋白还原钼铁蛋白的活化参数ΔH(0)++和ΔS(0)++分别为90 kJ·mol⁻¹和99 J·K⁻¹·mol⁻¹。艾林曲线中可能在28℃左右存在第二个拐点。