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鸟苷5'-O-(3-硫代三磷酸)对NRK细胞匀浆中磷脂酰肌醇周转影响的动力学分析。

Kinetic analysis of guanosine 5'-O-(3-thiotriphosphate) effects on phosphatidylinositol turnover in NRK cell homogenates.

作者信息

Chahwala S B, Fleischman L F, Cantley L

出版信息

Biochemistry. 1987 Jan 27;26(2):612-22. doi: 10.1021/bi00376a037.

Abstract

Addition of the guanine nucleotide analogue guanosine 5'-O-(3-thiotriphosphate) (GTP gamma S) to [3H]inositol-labeled NRK cell homogenates resulted in rapid breakdown of cellular polyphosphoinositides. GTP gamma S stimulated phospholipase C, resulting in a more than 4-fold increase in the hydrolysis rates of phosphatidylinositol 4-phosphate (PIP) and phosphatidylinositol 4,5-bis(phosphate) (PIP2). No significant effect of GTP gamma S on direct phosphatidylinositol (PI) hydrolysis was detected. There was an increase in water-soluble inositols, with inositol tris(phosphate) (IP3) levels increasing at least 10 times over the decrease seen in PIP2, indicating that PIP kinase activity was also accelerated following GTP gamma S addition. Inositol 1,4,5-tris(phosphate) peaked rapidly after GTP gamma S addition (less than 2 min) while inositol 1,3,4-tris-(phosphate) was produced more slowly and leveled off after approximately 10 min. The differential equations describing conversion between intermediates in the PI turnover pathway were solved and fitted to data obtained from both [3H]inositol and [32P]phosphate fluxes by nonlinear least-squares analysis. GTP gamma S effects on the pseudo-first-order rate constants for the lipase, kinase, and phosphatase steps were determined from the analysis. From these measurements it can be estimated that, in the presence of GTP gamma S and calcium buffered to 130 nM, hydrolysis of PIP2 accounts for at least 10 times as much diacylglycerol as direct PI breakdown despite the 100-fold excess of PI over PIP2. From the kinetic model it is predicted that small changes in the activities of PI and PIP kinases can have large but different effects on the level of IP3 and diacylglycerol following GTP gamma S addition. These results argue that regulation of PI and PIP kinases may be important for determining both cellular IP3 and diacylglycerol levels.

摘要

向用[³H]肌醇标记的NRK细胞匀浆中添加鸟嘌呤核苷酸类似物鸟苷5'-O-(3-硫代三磷酸)(GTPγS),会导致细胞多磷酸肌醇迅速分解。GTPγS刺激磷脂酶C,使磷脂酰肌醇4-磷酸(PIP)和磷脂酰肌醇4,5-双磷酸(PIP2)的水解速率增加4倍以上。未检测到GTPγS对直接磷脂酰肌醇(PI)水解有显著影响。水溶性肌醇增加,肌醇三磷酸(IP3)水平增加至少10倍,超过PIP2的减少量,表明添加GTPγS后PIP激酶活性也加速。添加GTPγS后(不到2分钟),肌醇1,4,5-三磷酸迅速达到峰值,而肌醇1,3,4-三磷酸产生较慢,约10分钟后趋于平稳。求解了描述PI周转途径中中间体之间转化的微分方程,并通过非线性最小二乘法分析将其拟合到从[³H]肌醇和[³²P]磷酸盐通量获得的数据中。通过分析确定了GTPγS对脂肪酶、激酶和磷酸酶步骤的伪一级速率常数的影响。根据这些测量结果可以估计,在GTPγS存在且钙缓冲至130 nM的情况下,尽管PI比PIP2过量100倍,但PIP2的水解产生的二酰基甘油至少是直接PI分解的10倍。根据动力学模型预测,添加GTPγS后,PI和PIP激酶活性的微小变化可能对IP3和二酰基甘油水平产生大但不同的影响。这些结果表明,PI和PIP激酶的调节可能对确定细胞内IP3和二酰基甘油水平很重要。

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