首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Opposing effects of protein kinase C and protein kinase A on metabotropic glutamate receptor signaling: Selective desensitization of the inositol trisphosphate/Ca2+ pathway by phosphorylation of the receptor-G protein-coupling domain
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Opposing effects of protein kinase C and protein kinase A on metabotropic glutamate receptor signaling: Selective desensitization of the inositol trisphosphate/Ca2+ pathway by phosphorylation of the receptor-G protein-coupling domain

机译:蛋白激酶C和蛋白激酶A对代谢型谷氨酸受体信号转导的相反作用:受体G蛋白偶联结构域的磷酸化使肌醇三磷酸/ Ca2 +途径选择性脱敏

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摘要

Signaling by the metabotropic glutamate receptor 1α (mGluR1α) can lead to the accumulation of inositol 1,4,5-trisphosphate (InsP3) and cAMP and to the modulation of K+ and Ca2+ channel opening. At present, very little is known about how these different actions are integrated and eventually turned off. Unraveling the molecular mechanisms underlying these functions is crucial for understanding mGluR-mediated regulation of synaptic transmission. It has been shown that receptor-induced activation of the InsP3 pathway is subject to feedback inhibition mediated by protein kinase C (PKC). In this study, we provide evidence for a differential regulation by PKC and protein kinase A of two distinct mGluR1α-dependent signaling pathways. PKC activation selectively inhibits agonist-dependent stimulation of the InsP3 pathway but does not affect receptor signaling via cAMP. In contrast, protein kinase A potentiates agonist-independent signaling of the receptor via InsP3. Furthermore, we demonstrate that the selectivity of PKC action on receptor signaling rests on phosphorylation of a threonine residue located in the G protein-interacting domain of the receptor. Modification at Thr695 selectively disrupts mGluR1α–Gq/11 interaction without affecting signaling through Gs. Together, these data provide insight on the mechanisms by which selective down-regulation of a specific receptor-dependent signaling pathway can be achieved and on how cross-talk between different second messenger cascades may contribute to fine-tune short- and long-term receptor activity.
机译:代谢型谷氨酸受体1α(mGluR1α)发出的信号可导致肌醇1,4,5-三磷酸(InsP3)和cAMP蓄积并调节K + 和Ca 2+ 渠道开放。目前,关于这些不同的动作如何整合并最终关闭的了解甚少。阐明这些功能的分子机制对于理解mGluR介导的突触传递调控至关重要。已经显示,InsP3途径的受体诱导的激活受到蛋白激酶C(PKC)介导的反馈抑制。在这项研究中,我们提供了两个不同的mGluR1α依赖信号通路的PKC和蛋白激酶A的差异调节的证据。 PKC激活选择性抑制InsP3途径的激动剂依赖性刺激,但不影响通过cAMP的受体信号传导。相反,蛋白激酶A通过InsP3增强受体的激动剂非依赖性信号传导。此外,我们证明PKC作用于受体信号的选择性取决于位于受体G蛋白相互作用域中的苏氨酸残基的磷酸化。 Thr 695 处的修饰选择性地破坏了mGluR1α–Gq / 11的相互作用,而不会影响通过Gs发出的信号。在一起,这些数据提供了关于可以实现选择性下调特定受体依赖性信号传导途径的机制以及不同第二信使级联之间的串扰如何有助于微调短期和长期受体的机制的见解。活动。

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