Lester D S
Department of Membrane Research, Weizmann Institute of Science, Rehovot, Israel.
J Neurochem. 1989 Jun;52(6):1950-3. doi: 10.1111/j.1471-4159.1989.tb07284.x.
Extraction of rat brain membrane-associated protein kinase C with high specific activity was obtained by applying benzyl alcohol (a membrane fluidizer), EDTA, and high hydrostatic pressures. Approximately 50% of total brain-associated activity was extracted from membranes. The pressure-extracted activity had an eightfold enrichment in the lipid/protein ratio when compared with the cytosolic fraction. This may explain the inability of exogenous diacylglycerol to stimulate endogenous phosphorylation in pressure-extracted activity. The enzyme is extracted at greater than 1,300 atm, a result indicating it most likely has a portion inserted into the hydrophobic portion of the membrane bilayer. Perturbation of the native membrane induces a change in the membrane-associated protein kinase C-lipid interaction that permits extraction under conditions used for the cytosolic species. This is the first report of conversion of the endogenous membrane species to a cytosolic one and may be important in determining the role of protein kinase C in neuronal regulation.
通过使用苯甲醇(一种膜流化剂)、乙二胺四乙酸(EDTA)和高静水压力,可提取出具有高比活性的大鼠脑膜相关蛋白激酶C。从膜中提取出了约50%的全脑相关活性。与胞质部分相比,压力提取的活性在脂质/蛋白质比率上有八倍的富集。这可能解释了外源性二酰基甘油无法刺激压力提取活性中的内源性磷酸化的原因。该酶在大于1300个大气压的压力下被提取,这一结果表明它很可能有一部分插入到膜双层的疏水部分。天然膜的扰动会引起膜相关蛋白激酶C - 脂质相互作用的变化,从而允许在用于胞质成分的条件下进行提取。这是关于内源性膜成分转化为胞质成分的首次报道,可能对确定蛋白激酶C在神经元调节中的作用很重要。