Litosch I, Fain J N
Life Sci. 1986 Jul 21;39(3):187-94. doi: 10.1016/0024-3205(86)90529-1.
Phosphoinositide hydrolysis is coupled to receptor systems involved in the elevation of cytosolic Ca2+ and activation of protein kinase C. In cell-free systems, guanine nucleotides are required to transduce the effects of receptor activation to phosphoinositide breakdown. Non-hydrolyzable guanine nucleotides stimulate phosphoinositide breakdown in permeabilized cells as well as membranes prepared from salivary glands, GH3 cells, neutrophils, hepatocytes and cerebral cortical tissue. In blowfly salivary gland membranes, 5-hydroxytryptamine stimulates a guanine-nucleotide dependent breakdown of both endogenous and exogenous phosphoinositide substrate through activation of phospholipase C. These data suggest that a GTP-binding protein modulates phospholipase C activity. The identity of this GTP-binding protein has not been established but may resemble other regulatory GTP-binding proteins which have been identified as transducing proteins in a variety of receptor systems.
磷酸肌醇水解与参与胞质Ca2+升高和蛋白激酶C激活的受体系统相关联。在无细胞系统中,鸟嘌呤核苷酸是将受体激活的效应转导至磷酸肌醇分解所必需的。不可水解的鸟嘌呤核苷酸可刺激通透细胞以及由唾液腺、GH3细胞、中性粒细胞、肝细胞和大脑皮质组织制备的膜中的磷酸肌醇分解。在果蝇唾液腺膜中,5-羟色胺通过激活磷脂酶C刺激内源性和外源性磷酸肌醇底物的鸟嘌呤核苷酸依赖性分解。这些数据表明一种GTP结合蛋白调节磷脂酶C的活性。这种GTP结合蛋白的身份尚未确定,但可能类似于其他已被鉴定为多种受体系统中的转导蛋白的调节性GTP结合蛋白。