Grande H J, van Berkel-Arts A, Bregh J, van Dijk K, Veeger C
Eur J Biochem. 1983 Mar 1;131(1):81-8. doi: 10.1111/j.1432-1033.1983.tb07233.x.
Hydrogenase of Desulfovibrio vulgaris shows nonlinear kinetics in hydrogen production with both the natural electron carrier, cytochrome c3, and the artificial donor, methyl viologen semiquinone. Increasing concentrations of salt progressively inhibit the hydrogen production, as do increasing amounts of dimethylsulfoxide (Me2SO). Hydrogen consumption activity does not change up to 30% (v/v) of Me2SO. Preincubation in Me2SO up to 55% (v/v) does not affect the hydrogen uptake or production. The production activity of the enzyme shows an optimum around pH 6. When plotted as a function of redox potential the activity can be fitted to a Nernst equation with n = 1. Midpoint potentials calculated at various values follow approximately the hydrogen electrode to pH 6. Thereafter, there is a shift of about 40 mV to higher redox potentials.
普通脱硫弧菌的氢化酶在利用天然电子载体细胞色素c3和人工供体甲基紫精半醌产氢时表现出非线性动力学。盐浓度的增加会逐渐抑制产氢,二甲基亚砜(Me2SO)用量的增加也会如此。高达30%(v/v)的Me2SO不会改变耗氢活性。在高达55%(v/v)的Me2SO中预孵育不会影响氢的摄取或产生。该酶的产氢活性在pH 6左右表现出最佳值。当作为氧化还原电位的函数作图时,活性可以用n = 1的能斯特方程拟合。在不同值下计算的中点电位在pH 6之前大致遵循氢电极。此后,会向更高的氧化还原电位偏移约40 mV。