Park E S, Won J H, Han K J, Suh P G, Ryu S H, Lee H S, Yun H Y, Kwon N S, Baek K J
Department of Biochemistry, College of Medicine, Chung-Ang University, 221 Heuksuk-Dong, Dongjak-Gu, Seoul 156-756, South Korea.
Biochem J. 1998 Apr 1;331 ( Pt 1)(Pt 1):283-9. doi: 10.1042/bj3310283.
Although the oxytocin receptor modulates intracellular Ca2+ ion levels in myometrium, the identities of signal molecules have not been clearly clarified. Our previous studies on oxytocin receptor signalling demonstrated that 80 kDa Ghalpha is a signal mediator [Baek, Kwon, Lee, Kim, Muralidhar and Im (1996) Biochem. J. 315, 739-744]. To elucidate the effector in the oxytocin receptor signalling pathway, we evaluated the oxytocin-mediated activation of phospholipase C (PLC) by using solubilized membranes from human myometrium and a three-component preparation containing the oxytocin receptor-Ghalpha-PLC-delta1 complex. PLC-delta1 activity in the three-component preparation, as well as PLC activity in solubilized membranes, was increased by oxytocin in the presence of Ca2+ and activated Ghalpha (GTP-bound Ghalpha). Furthermore the stimulated PLC-delta1 activity resulting from activation of Ghalpha via the oxytocin receptor was significantly attenuated by the selective oxytocin antagonist desGly-NH2d(CH2)5[Tyr(Me)2,Thr4]ornithine vasotocin or GDP. Consistent with these observations, co-immunoprecipitation and co-immunoadsorption of PLC-delta1 in the three-component preparation by anti-Gh7alpha antibody resulted in the PLC-delta1 being tightly coupled to activated Ghalpha on stimulation of the oxytocin receptor. These results indicate that PLC-delta1 is the effector for Ghalpha-mediated oxytocin receptor signalling.
尽管催产素受体可调节子宫肌层细胞内钙离子水平,但信号分子的具体身份尚未完全明确。我们之前关于催产素受体信号传导的研究表明,80 kDa的Gα是一种信号介质[Baek、Kwon、Lee、Kim、Muralidhar和Im(1996年)《生物化学杂志》315卷,739 - 744页]。为阐明催产素受体信号通路中的效应器,我们使用人子宫肌层的可溶性膜以及包含催产素受体 - Gα - PLC - δ1复合物的三组分制剂,评估了催产素介导的磷脂酶C(PLC)激活情况。在钙离子和活化的Gα(结合GTP的Gα)存在的情况下,催产素可增加三组分制剂中的PLC - δ1活性以及可溶性膜中的PLC活性。此外,通过催产素受体激活Gα所导致的受刺激PLC - δ1活性,会被选择性催产素拮抗剂去甘氨酰胺 - d(CH2)5[酪氨酸(甲基)2,苏氨酸4]鸟氨酸加压素或GDP显著减弱。与这些观察结果一致,在三组分制剂中,抗Gα7抗体对PLC - δ1进行共免疫沉淀和共免疫吸附后,在催产素受体受刺激时,PLC - δ1与活化的Gα紧密偶联。这些结果表明,PLC - δ1是Gα介导的催产素受体信号传导的效应器。