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垂体细胞中多巴胺-D2S受体对钙内流、腺苷酸环化酶和丝裂原活化蛋白激酶的抑制作用:不同的Gα和Gβγ需求

Dopamine-D2S receptor inhibition of calcium influx, adenylyl cyclase, and mitogen-activated protein kinase in pituitary cells: distinct Galpha and Gbetagamma requirements.

作者信息

Banihashemi Behzad, Albert Paul R

机构信息

Ottawa Health Research Institute, Neuroscience, Department of Medicine, University of Ottawa, Ottawa, Ontario, Canada K1H-8M5.

出版信息

Mol Endocrinol. 2002 Oct;16(10):2393-404. doi: 10.1210/me.2001-0220.

Abstract

The G protein specificity of multiple signaling pathways of the dopamine-D2S (short form) receptor was investigated in GH4ZR7 lactotroph cells. Activation of the dopamine-D2S receptor inhibited forskolin-induced cAMP production, reduced BayK8644- activated calcium influx, and blocked TRH-mediated p42/p44 MAPK phosphorylation. These actions were blocked by pretreatment with pertussis toxin (PTX), indicating mediation by G(i/o) proteins. D2S stimulation also decreased TRH-induced MAPK/ERK kinase phosphorylation. TRH induced c-Raf but not B-Raf activation, and the D2S receptor inhibited both TRH-induced c-Raf and basal B-Raf kinase activity. After PTX treatment, D2S receptor signaling was rescued in cells stably transfected with individual PTX-insensitive Galpha mutants. Inhibition of adenylyl cyclase was partly rescued by Galpha(i)2 or Galpha(i)3, but Galpha(o) alone completely reconstituted D2S-mediated inhibition of BayK8644-induced L-type calcium channel activation. Galpha(o) and Galpha(i)3 were the main components involved in D2S-mediated p42/44 MAPK inhibition. In cells transfected with the carboxyl-terminal domain of G protein receptor kinase to inhibit Gbetagamma signaling, only D2S-mediated inhibition of calcium influx was blocked, but not inhibition of adenylyl cyclase or MAPK. These results indicate that the dopamine-D2S receptor couples to distinct G(i/o) proteins, depending on the pathway addressed, and suggest a novel Galpha(i)3/Galpha(o)-dependent inhibition of MAPK mediated by c-Raf and B-Raf-dependent inhibition of MAPK/ERK kinase.

摘要

在GH4ZR7催乳素细胞中研究了多巴胺-D2S(短形式)受体多条信号通路的G蛋白特异性。多巴胺-D2S受体的激活抑制了福斯高林诱导的cAMP生成,减少了BayK8644激活的钙内流,并阻断了促甲状腺激素释放激素(TRH)介导的p42/p44丝裂原活化蛋白激酶(MAPK)磷酸化。这些作用可被百日咳毒素(PTX)预处理阻断,表明是由G(i/o)蛋白介导的。D2S刺激还降低了TRH诱导的MAPK/细胞外信号调节激酶(ERK)激酶磷酸化。TRH诱导c-Raf激活,但不诱导B-Raf激活,并且D2S受体抑制TRH诱导的c-Raf和基础B-Raf激酶活性。PTX处理后,在稳定转染单个对PTX不敏感的Gα突变体的细胞中,D2S受体信号得以恢复。腺苷酸环化酶的抑制部分被Gα(i)2或Gα(i)3挽救,但单独的Gα(o)完全重建了D2S介导的对BayK8644诱导的L型钙通道激活的抑制。Gα(o)和Gα(i)3是参与D2S介导的p42/44 MAPK抑制的主要成分。在转染了G蛋白受体激酶羧基末端结构域以抑制Gβγ信号传导的细胞中,仅D2S介导的钙内流抑制被阻断,但腺苷酸环化酶或MAPK的抑制未被阻断。这些结果表明,多巴胺-D2S受体根据所涉及的信号通路与不同的G(i/o)蛋白偶联,并提示一种由c-Raf介导的、依赖于Gα(i)3/Gα(o)的MAPK新抑制作用以及由B-Raf依赖的MAPK/ERK激酶抑制作用。

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