Engelhard V H, Glaser M, Storm D R
Biochemistry. 1978 Aug 8;17(16):3191-200. doi: 10.1021/bi00609a004.
Adenylate cyclase activities were examined in mouse LM cell membranes which had been supplemented with polar head groups and/or fatty acids. Basal, fluoride-, and PGE1-stimulated activities varied systematically with changes in phospholipid composition, and PGE1-stimulated activities correlated with the average degree of unsaturation of the phospholipid fatty acids or with the primary amino group character of the phospholipid polar head groups. In addition, the Km for ATP of basal adenylate cyclase was systematically changed by both polar head group and fatty acid supplementation. Alteration of the membrane lipid composition also changed the temperature dependence of the enzyme and the lag time between addition of PGE1 and the onset of a change in catalytic rate. However, none of the alterations in the enzyme activity could be correlated with the viscosities of supplemented membranes and, instead, seemed to be characteristic for a specific polar head group or fatty acid composition. The data suggest a specific interaction of the enzyme with phospholipids and indicate that structural features of phospholipids may play a role in regulating adenylate cyclase activity. It is proposed that adenylate cyclase can exist in several different conformations in the membrane depending upon the phospholipid composition.
在补充了极性头部基团和/或脂肪酸的小鼠LM细胞膜中检测了腺苷酸环化酶活性。基础、氟化物和前列腺素E1刺激的活性随磷脂组成的变化而系统地变化,且前列腺素E1刺激的活性与磷脂脂肪酸的平均不饱和度或磷脂极性头部基团的伯氨基特征相关。此外,基础腺苷酸环化酶对ATP的米氏常数会因极性头部基团和脂肪酸的补充而发生系统性变化。膜脂质组成的改变也改变了酶的温度依赖性以及添加前列腺素E1与催化速率变化开始之间的滞后时间。然而,酶活性的任何改变都与补充膜的粘度无关,相反,似乎是特定极性头部基团或脂肪酸组成的特征。数据表明酶与磷脂之间存在特定相互作用,并表明磷脂的结构特征可能在调节腺苷酸环化酶活性中起作用。有人提出,根据磷脂组成,腺苷酸环化酶在膜中可以以几种不同的构象存在。