Lewis R J, Krulwich T A, Reynafarje B, Lehninger A L
J Biol Chem. 1983 Feb 25;258(4):2109-11.
Obligately alkalophilic Bacillus firmus RAB had a higher molar growth yield on L-malate (Ymal = 38 mg, dry weight/mmol of L-malate) than its non-alkalophilic mutant derivative, strain RABN (Ymal = 12 mg, dry weight/mmol of L-malate). Measurements of respiration dependent proton translocation by the two strains in the presence of K+ and valinomycin showed that the alkalophile also has much higher H+/O stoichiometries (at pH 9.0) than does the mutant (at pH 7.0). H+/O ratios for B. firmus RAB at pH 9.0 were as high as 13, with a frequently observed value of 9. These high values were observed in the first phase of a set of biphasic curves for both oxygen consumption and proton ejection. At pH 7.0, both the wild type and the mutant exhibited H+/O ratios near 4 in a single phase of oxygen consumption and proton ejection. The results are consistent with suggestions that the alkalophilic respiratory chain is especially well adapted for effective energy transduction at alkaline but not neutral pH.
专性嗜碱芽孢杆菌RAB在L-苹果酸上的摩尔生长产量(Ymal = 38毫克干重/L-苹果酸毫摩尔)高于其非嗜碱突变衍生物菌株RABN(Ymal = 12毫克干重/L-苹果酸毫摩尔)。在存在K⁺和缬氨霉素的情况下,对这两种菌株呼吸依赖性质子转运的测量表明,嗜碱菌在pH 9.0时的H⁺/O化学计量比也比突变体在pH 7.0时高得多。嗜碱芽孢杆菌RAB在pH 9.0时的H⁺/O比值高达13,经常观察到的值为9。在耗氧和质子排出的双相曲线的第一阶段观察到了这些高值。在pH 7.0时,野生型和突变体在耗氧和质子排出的单相中H⁺/O比值均接近4。结果与以下观点一致,即嗜碱呼吸链特别适合在碱性而非中性pH下进行有效的能量转换。