Kluge C, Dimroth P
Mikrobiologisches Institut, Eidenössische Technische Hochschule, ETH-Zentrum, Zürich, Switzerland.
Biochemistry. 1993 Oct 5;32(39):10378-86. doi: 10.1021/bi00090a013.
Purified F1Fo ATPase of Propionigenium modestum was rapidly inactivated by dicyclohexylcarbodiimide (DCCD) with k2 = 1.2 x 10(5) M-1 min-1 at pH 5.6 and 0 degree C. Na+ ions provided specific protection from the modification by DCCD while protons stimulated the reaction. Plots of pseudo-first-order rate constants of inactivation (kobs) against pH yielded titration curves with pK(H+) = 7.0 in the absence of Na+ and pK(H+) = 6.2 in the presence of 0.5 mM Na+. From the dependencies of kobs on Na+, pK(Na+) of about 2.5 and 3.3 were obtained at pH 6.5 and 8.0, respectively. These results indicate that DCCD reacts with a protonated group of the enzyme that dissociates with pK(H+) = 7.0 in the absence of Na+, and that Na+ ions promote the dissociation of this group. Additionally, higher Na+ concentrations were required at more acidic pH values to yield half-maximal protection from inactivation. These effects fit a competitive binding model for Na+ or H+ at the DCCD-reactive conserved acidic amino acid of subunit c (Glu-65). The active-site carboxylate could either be protonated and modified by DCCD or bind Na+ which then provides protection. Complementary results were obtained from the effects of Na+ and H+ on ATPase activity. The pH-rate profile of numax (with saturating Na+) indicated an increase of activity with apparent pK = 6.8, an optimum around pH 7.5, and decreasing activity with apparent pK = 8.7.(ABSTRACT TRUNCATED AT 250 WORDS)
在pH 5.6和0℃条件下,适度丙酸杆菌纯化的F1Fo ATP酶可被二环己基碳二亚胺(DCCD)迅速灭活,二级反应速率常数k2 = 1.2×10⁵ M⁻¹ min⁻¹。Na⁺离子可特异性保护该酶免受DCCD修饰,而质子则会促进反应。以灭活的假一级反应速率常数(kobs)对pH作图,在无Na⁺时得到滴定曲线,其pK(H⁺) = 7.0;在存在0.5 mM Na⁺时,pK(H⁺) = 6.2。根据kobs对Na⁺的依赖性,在pH 6.5和8.0时分别得到pK(Na⁺)约为2.5和3.3。这些结果表明,DCCD与酶的一个质子化基团反应,在无Na⁺时该基团以pK(H⁺) = 7.0解离,且Na⁺离子促进该基团的解离。此外,在更酸性的pH值下需要更高的Na⁺浓度才能产生半数最大程度的灭活保护。这些效应符合Na⁺或H⁺在亚基c(Glu-65)的DCCD反应性保守酸性氨基酸处的竞争性结合模型。活性位点的羧酸盐要么被质子化并被DCCD修饰,要么结合Na⁺从而提供保护。从Na⁺和H⁺对ATP酶活性的影响中获得了互补的结果。在Na⁺饱和时,最大酶活性(numax)的pH速率曲线表明,活性随表观pK = 6.8增加,在pH 7.5左右达到最佳,然后随表观pK = 8.7下降。(摘要截短至250字)