Gordon L M, Whetton A D, Rawal S, Esgate J A, Houslay M D
Biochim Biophys Acta. 1983 Mar 23;729(1):104-14. doi: 10.1016/0005-2736(83)90461-3.
Ca2+ decreased the lipid fluidity of rat liver plasma membranes labeled with 5-nitroxide stearate, I(12,3), as indicated by the order parameter (S). These effects form a reversible, saturable process with an association constant of 1 x 10(3) M-1. Arrhenius-type plots of S indicated that the lipid phase separation, present in the external leaflet of native membranes between 28 and 19 degrees C, is perturbed by mM Ca2+ such that the high temperature onset is elevated to 32-34 degrees C. Fluoride-stimulated adenylate cyclase was similarly inhibited by Ca2+ (ID50 = 1 mM) for the enzyme in membrane-bound or solubilized states. The glucagon-stimulated activity was more sensitive to Ca2+ inhibition with an ID50 of 0.2 mM. These inhibitory effects are due neither to perturbations of glucagon binding to its receptor nor to fluidity changes, but are instead attributed to direct Ca2+-enzyme interactions. Such binding desensitizes the enzyme to fluidity alterations induced by temperature elevation or benzyl alcohol addition. With Ca2+, Arrhenius plots of glucagon-stimulated activity indicated breaks at 32 and 16 degrees C, whereas those of fluoride-stimulated activity showed one break at 17 degrees C. Without Ca2+, Arrhenius plots exhibited one break at 28 degrees C for glucagon-stimulated activity, whereas fluoride-stimulated plots were linear. We propose that Ca2+ achieves these effects through asymmetric perturbations of the membrane lipid structure.
钙离子降低了用5-硝基硬脂酸(I(12,3))标记的大鼠肝质膜的脂质流动性,这由序参数(S)表明。这些效应形成一个可逆的、可饱和的过程,其缔合常数为1×10³ M⁻¹。S的阿累尼乌斯型图表明,天然膜外小叶在28至19℃之间存在的脂质相分离受到毫摩尔级钙离子的干扰,使得高温起始温度升高到32 - 34℃。对于膜结合或可溶状态的酶,氟化物刺激的腺苷酸环化酶同样受到钙离子抑制(半数抑制浓度 = 1 mM)。胰高血糖素刺激的活性对钙离子抑制更敏感,半数抑制浓度为0.2 mM。这些抑制作用既不是由于胰高血糖素与其受体结合的扰动,也不是由于流动性变化,而是归因于钙离子与酶的直接相互作用。这种结合使酶对温度升高或添加苄醇诱导的流动性改变不敏感。有钙离子时,胰高血糖素刺激活性的阿累尼乌斯图在32℃和16℃处有断点,而氟化物刺激活性的阿累尼乌斯图在17℃处有一个断点。没有钙离子时,胰高血糖素刺激活性的阿累尼乌斯图在28℃处有一个断点,而氟化物刺激的图是线性的。我们提出钙离子通过对膜脂质结构的不对称扰动实现这些效应。