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磷脂酰肌醇4',5'-二磷酸对人血小板中磷脂酶C活性的可能调节作用。

Possible regulation of phospholipase C activity in human platelets by phosphatidylinositol 4',5'-bisphosphate.

作者信息

Graff G, Nahas N, Nikolopoulou M, Natarajan V, Schmid H H

出版信息

Arch Biochem Biophys. 1984 Jan;228(1):299-308. doi: 10.1016/0003-9861(84)90071-7.

Abstract

Phospholipase C from human platelets was found to catalyze the Ca2+-dependent degradation of phosphatidylinositol (PI), phosphatidylinositol 4'-phosphate (DPI), and phosphatidylinositol 4',5'-bisphosphate (TPI) at Ca2+ concentrations from 150 microM to 5 mM. Both DPI and TPI inhibited the hydrolysis of [2-3H]inositol-labeled PI (250 microM) in a concentration-dependent manner. The use of DPI and TPI from beef brain, both of which have fatty acid compositions different from that of soybean PI, permitted an assessment of the inhibitory effect of polyphosphoinositides on the hydrolysis of PI by phospholipase C. Fatty acid analysis of the diacylglycerols formed demonstrated that DPI and TPI, when incubated in mixture with PI, were competitive substrates for PI hydrolysis. Increasing the DPI/PI ratio from 0 to 0.3 caused a shift in the degradation of PI to DPI without greatly affecting the formation of 1,2-diacylglycerol. TPI alone, or in mixture with PI, was a poor substrate for phospholipase C. Increasing the TPI/PI ratio from 0 to 0.21, on the other hand, inhibited both PI degradation (greater than or equal to 95%) and overall formation of 1,2-diacylglycerol (greater than or equal to 82%). Kinetic analysis revealed that TPI acts as a mixed-type inhibitor with a Ki of about 10 microM. The Ka for Ca2+ in PI hydrolysis was profoundly increased from 5 to 180 microM when TPI (36 microM) was included with PI (250 microM). Optimum PI degradation under these conditions was only attained when the calcium concentration approached 4 mM. Analysis of phospholipids from unstimulated human platelets from five different donors revealed DPI/PI and TPI/PI ratios of 0.42 and 0.16, respectively. These findings, combined with the observed inhibition of PI hydrolysis by TPI at a TPI/PI ratio of 0.16, would suggest that in unstimulated platelets phospholipase C activity may be inhibited by greater than or equal to 75%. Changes in 33P-prelabeled phospholipids of intact platelets upon stimulation with thrombin indicated a transient decline in 33P label of both TPI and DPI (15 s) followed by an increase in [33P]phosphatidic acid but no change in [33P]PI. The finding that DPI is selectively degraded by phospholipase C in mixture with PI at DPI/PI ratios determined to be present in unstimulated platelets indicates that DPI may be more important than PI in the formation of 1,2-diacylglycerol which is believed to serve as precursor of arachidonic acid for thromboxane biosynthesis. Furthermore, the results suggest that in human platelets TPI may serve as modulator for the formation of 1,2-diacylglycerol from inositol phospholipids.

摘要

已发现人血小板中的磷脂酶C在150微摩尔/升至5毫摩尔/升的钙离子浓度下,能催化磷脂酰肌醇(PI)、磷脂酰肌醇4'-磷酸(DPI)和磷脂酰肌醇4',5'-二磷酸(TPI)的钙离子依赖性降解。DPI和TPI均以浓度依赖性方式抑制[2-3H]肌醇标记的PI(250微摩尔/升)的水解。使用来自牛脑的DPI和TPI,它们的脂肪酸组成均与大豆PI不同,这使得能够评估多磷酸肌醇对磷脂酶C水解PI的抑制作用。对形成的二酰基甘油进行脂肪酸分析表明,DPI和TPI与PI混合孵育时,是PI水解的竞争性底物。将DPI/PI比值从0提高到0.3会导致PI降解向DPI转变,而对1,2-二酰基甘油的形成影响不大。单独的TPI或与PI混合时,都是磷脂酶C的不良底物。另一方面,将TPI/PI比值从0提高到0.21,会抑制PI降解(大于或等于95%)和1,2-二酰基甘油的总体形成(大于或等于82%)。动力学分析表明,TPI作为混合型抑制剂,其抑制常数(Ki)约为10微摩尔/升。当TPI(36微摩尔/升)与PI(250微摩尔/升)一起存在时,PI水解中钙离子的解离常数(Ka)从5微摩尔/升大幅增加到180微摩尔/升。在这些条件下,只有当钙离子浓度接近4毫摩尔/升时,才能实现最佳的PI降解。对来自五个不同供体的未刺激人血小板中的磷脂进行分析,结果显示DPI/PI和TPI/PI比值分别为0.42和0.16。这些发现,再加上观察到TPI在TPI/PI比值为0.16时对PI水解的抑制作用,表明在未刺激的血小板中,磷脂酶C的活性可能被抑制了大于或等于75%。用凝血酶刺激完整血小板后,33P预标记磷脂的变化表明,TPI和DPI的33P标记均出现短暂下降(15秒),随后磷脂酸的[33P]增加,但[33P]PI没有变化。在未刺激血小板中确定存在的DPI/PI比值下,DPI与PI混合时被磷脂酶C选择性降解,这一发现表明,在1,2-二酰基甘油的形成中,DPI可能比PI更重要,而1,2-二酰基甘油被认为是血栓素生物合成中花生四烯酸的前体。此外,结果表明,在人血小板中,TPI可能作为从肌醇磷脂形成1,2-二酰基甘油的调节剂。

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