Silvius J R, McElhaney R N
Proc Natl Acad Sci U S A. 1980 Mar;77(3):1255-9. doi: 10.1073/pnas.77.3.1255.
Careful analysis of the Arrhenius plot of the Na+,Mg2+-ATPase (ATP pyrophosphohydrolase, EC 3.6.1.8) activity in Acholeplasma laidlawii B membranes of varying fatty acid composition has been combined with differential thermal analysis of the membrane lipid phase transitions to evaluate the effects of membrane lipid properties on the enzyme activity. Our results indicate that the enzyme is active only in association with liquid-crystalline lipids, exhibiting a significant heat capacity of activation, delta Cp++, for the ATP hydrolytic reaction in this case. Quantitative analyses of Arrhenius plots for the enzyme activity in membranes whose lipids exhibit a gel-to-liquid-crystalline phase transition in the physiological temperature range suggest that the ATPase is inactivated when its boundary lipids undergo a phase transition that is driven by the bulk lipid phase transition but is less cooperative than the latter. Our results suggest that the familiar "biphasic linear" Arrhenius plots obtained for many membrane enzymes may in fact have a more complex shape, analysis of which can furnish useful information regarding the behavior of the enzyme molecule.
对不同脂肪酸组成的莱氏无胆甾原体B膜中Na + 、Mg2 + -ATP酶(ATP焦磷酸水解酶,EC 3.6.1.8)活性的阿伦尼乌斯曲线进行仔细分析,并结合膜脂质相变的差示热分析,以评估膜脂质特性对酶活性的影响。我们的结果表明,该酶仅在与液晶脂质结合时才具有活性,在这种情况下,ATP水解反应表现出显著的活化热容量ΔCp++。对脂质在生理温度范围内呈现凝胶 - 液晶相变的膜中酶活性的阿伦尼乌斯曲线进行定量分析表明,当ATP酶的边界脂质发生由主体脂质相变驱动但协同性低于后者的相变时,该ATP酶会失活。我们的结果表明,许多膜酶所获得的常见“双相线性”阿伦尼乌斯曲线实际上可能具有更复杂的形状,对其进行分析可以提供有关酶分子行为的有用信息。