Claro E, Wallace M A, Lee H M, Fain J N
Department of Biochemistry, University of Tennessee, Memphis 38163.
J Biol Chem. 1989 Nov 5;264(31):18288-95.
The breakdown of exogenously added [3H]inositol-labeled phosphoinositides by rat brain cortical membranes was stimulated by the muscarinic cholinergic agonist carbachol. The stimulation required the presence of guanine nucleotide. Optimal conditions were similar to those described for guanosine 5'-O-(3-thiotriphosphate) (GTP gamma S) + carbachol stimulation of phosphoinositide breakdown in [3H]inositol-prelabeled brain membranes (Claro, E., Garcia, A., and Picatoste, F. (1989) Biochem J. 261, 29-35). Carbachol stimulated [3H]phosphatidylinositol 4,5-bisphosphate (PIP2) breakdown was inhibited by atropine and guanosine 5'-O-(2-thiobisphosphate). The magnitude of the stimulation of exogenous PIP2 breakdown by carbachol and GTP gamma S (2- to 3-fold) was little affected over a PIP2 concentration range of 0.03-100 microM. Phosphatidylinositol 4-phosphate (PIP) was as good a substrate at all concentrations as PIP2 for carbachol stimulation of phospholipase C activity. There was appreciable phosphomonoesterase degradation of PIP to phosphatidylinositol (PI) over 10 min. There was also some conversion of added PIP to PIP2 in the presence of added ATP. The effect of calcium on PIP breakdown was similar to that on PIP2 breakdown, with an apparent EC50 for Ca2+ stimulation of 0.74 and 0.72 microM, respectively, under basal conditions. The stimulation of PIP2 and PIP breakdown by carbachol in the presence of GTP gamma S was greatest on a percentage basis at the lowest free Ca2+ concentrations. Above 1 microM free Ca2+, the stimulatory effect was lost, whereas 10 microM free Ca2+ gave a maximal stimulation of basal phospholipase C activity. Degradation of added PI was also stimulated by carbachol in the absence of ATP. PI breakdown had an EC50 for Ca2+ stimulation of 1.07 microM. The best stimulation of PI breakdown due to carbachol plus GTP gamma S was seen with 0.3 microM free Ca2+ and 100 microM PI. Maximal activation of PI breakdown was seen at 1 mM deoxycholate as was true for PIP2 and PIP breakdown. There was little effect, even of 30 microM GTP gamma S alone or of carbachol alone, on PI breakdown. Half-maximal activation of the carbachol response required only 0.2 microM GTP gamma S. These results indicate that the phospholipase C enzyme(s) activated by carbachol in the presence of GTP gamma S in rat brain cortical membranes can degrade PIP2, PIP, and PI to inositol phosphates and diacylglycerol.
毒蕈碱型胆碱能激动剂卡巴胆碱可刺激大鼠脑皮质膜对外源添加的[3H]肌醇标记的磷酸肌醇的分解。这种刺激需要鸟嘌呤核苷酸的存在。最佳条件与鸟苷5'-O-(3-硫代三磷酸)(GTPγS)+卡巴胆碱刺激[3H]肌醇预标记脑膜中磷酸肌醇分解的条件相似(克拉罗,E.,加西亚,A.,和皮卡托斯特,F.(1989)《生物化学杂志》261,29 - 35)。阿托品和鸟苷5'-O-(2-硫代二磷酸)可抑制卡巴胆碱刺激的[3H]磷脂酰肌醇4,5-二磷酸(PIP2)分解。在0.03 - 100μM的PIP2浓度范围内,卡巴胆碱和GTPγS对外源PIP2分解的刺激幅度(2至3倍)几乎不受影响。在所有浓度下,磷脂酰肌醇4-磷酸(PIP)作为卡巴胆碱刺激磷脂酶C活性的底物与PIP2一样好。在10分钟内,PIP有明显的磷酸单酯酶降解为磷脂酰肌醇(PI)。在添加ATP的情况下,添加的PIP也有一些转化为PIP2。钙对PIP分解的影响与对PIP2分解的影响相似,在基础条件下,Ca2+刺激的表观EC50分别为0.74和0.72μM。在最低游离Ca2+浓度下,卡巴胆碱在GTPγS存在下对PIP2和PIP分解的刺激在百分比基础上最大。游离Ca2+浓度高于1μM时,刺激作用消失,而10μM游离Ca2+可使基础磷脂酶C活性得到最大刺激。在没有ATP的情况下,卡巴胆碱也可刺激添加的PI的降解。PI分解的Ca2+刺激的EC50为1.07μM。在0.3μM游离Ca2+和100μM PI时,可观察到卡巴胆碱加GTPγS对PI分解的最佳刺激。PI分解的最大激活见于1 mM脱氧胆酸盐,PIP2和PIP分解也是如此。即使单独使用30μM GTPγS或单独使用卡巴胆碱,对PI分解的影响也很小。卡巴胆碱反应的半数最大激活仅需0.2μM GTPγS。这些结果表明,在大鼠脑皮质膜中,卡巴胆碱在GTPγS存在下激活的磷脂酶C酶可将PIP2、PIP和PI降解为肌醇磷酸和二酰基甘油。