Navidi M, MacQuarrie R A, Sun G Y
Sinclair Comparative Medicine Research Farm, University of Missouri, Columbia 65203.
Lipids. 1990 May;25(5):273-7. doi: 10.1007/BF02544387.
The metabolism of phosphatidylinositols (PI) labeled with [14C]arachidonic acid within plasma membranes or synaptosomes was compared to the metabolism of PI prelabeled with [14C]arachidonic acid and added exogenously to the same membranes. Incubation of membranes containing the endogenously-labeled PI pool in the presence of Ca2+ resulted in the release of labeled arachidonic acid, as well as a small amount of labeled diacylglycerol. Labeled arachidonic acid was effectively reutilized and returned to the membrane phospholipids in the presence of adenosine triphosphate (ATP), CoA, and lysoPI. Although Ca2+ promoted the release of labeled diacylglycerol from prelabeled plasma membranes, this amount was only 17% of the maximal release, i.e., release in the presence of deoxycholate and Ca2+. This latter condition is known to fully activate the PI-phospholipase C, and incubation of prelabeled plasma membranes resulted in a six-fold increase in labeled diacylglycerols. On the other hand, when exogenously labeled PI were incubated with plasma membranes in the presence of Ca2+, the labeled diacylglycerols released were 59% of that compared to the fully activated condition. The phospholipase C action was calcium-dependent, regardless of whether exogenous or endogenous substrates were used in the incubation. In contrast to plasma membranes, intact synaptosomes had limited ability to metabolize exogenous PI even in the presence of Ca2+, although the activity of phospholipase C was similar to that in the plasma membranes when assayed in the presence of deoxycholate and Ca2+. These results suggest that discrete pools of PI are present in plasma membranes, and that the pool associated with the acyltransferase is apparently not readily accessible to hydrolysis by phospholipase C.
将质膜或突触体中用[14C]花生四烯酸标记的磷脂酰肌醇(PI)的代谢与预先用[14C]花生四烯酸标记并外源添加到相同膜中的PI的代谢进行了比较。在Ca2+存在下孵育含有内源性标记PI池的膜,导致标记的花生四烯酸释放,以及少量标记的二酰基甘油。在三磷酸腺苷(ATP)、辅酶A和溶血磷脂酰肌醇存在下,标记的花生四烯酸被有效地再利用并返回膜磷脂中。尽管Ca2+促进了预先标记的质膜中标记的二酰基甘油的释放,但该量仅为最大释放量的17%,即脱氧胆酸盐和Ca2+存在下的释放量。已知后一种情况可完全激活PI-磷脂酶C,预先标记的质膜孵育导致标记的二酰基甘油增加了六倍。另一方面,当在Ca2+存在下将外源标记的PI与质膜一起孵育时,释放的标记二酰基甘油是完全激活条件下的59%。无论孵育中使用外源还是内源底物,磷脂酶C的作用都是钙依赖性的。与质膜相反,完整的突触体即使在Ca2+存在下代谢外源PI的能力也有限,尽管在脱氧胆酸盐和Ca2+存在下测定时磷脂酶C的活性与质膜中的活性相似。这些结果表明,质膜中存在离散的PI池,并且与酰基转移酶相关的池显然不容易被磷脂酶C水解。