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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Compartmentalization of the GABAB receptor signaling complex is required for presynaptic inhibition at hippocampal synapses.
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Compartmentalization of the GABAB receptor signaling complex is required for presynaptic inhibition at hippocampal synapses.

机译:在海马突触中突触前抑制需要GABAB受体信号传导复合物的区室化。

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摘要

Presynaptic inhibition via G-protein-coupled receptors (GPCRs) and voltage-gated Ca(2+) channels constitutes a widespread regulatory mechanism of synaptic strength. Yet, the mechanism of intermolecular coupling underlying GPCR-mediated signaling at central synapses remains unresolved. Using FRET spectroscopy, we provide evidence for formation of spatially restricted (<100 A) complexes between GABA(B) receptors composed of GB(1a)/GB(2) subunits, Galpha(o)beta(1)gamma(2) G-protein heterotrimer, and Ca(V)2.2 channels in hippocampal boutons. GABA release was not required for the assembly but for structural reorganization of the precoupled complex. Unexpectedly, GB(1a) deletion disrupted intermolecular associations within the complex. The GB(1a) proximal C-terminal domain was essential for association of the receptor, Ca(V)2.2 and Gbetagamma, but was dispensable for agonist-induced receptor activation and cAMP inhibition. Functionally, boutons lacking this complex-formation domain displayed impaired presynaptic inhibition of Ca(2+) transients and synaptic vesicle release. Thus, compartmentalization of the GABA(B1a) receptor, Gbetagamma, and Ca(V)2.2 channel in a signaling complex is required for presynaptic inhibition at hippocampal synapses.
机译:通过G蛋白偶联受体(GPCR)和电压门控的Ca(2+)通道的突触前抑制构成了突触强度的广泛调节机制。然而,分子间偶联的机制尚不清楚。使用FRET光谱,我们提供了由GB(1a)/ GB(2)亚基,Galpha(o)beta(1)gamma(2)G组成的GABA(B)受体之间空间受限(<100 A)配合物形成的证据蛋白异源三聚体和海马boutons中的Ca(V)2.2通道。组装不需要GABA释放,而是预偶联复合物的结构重组。出乎意料的是,GB(1a)缺失破坏了复合物中的分子间结合。 GB(1a)近端C末端域对于受体,Ca(V)2.2和Gbetagamma的缔合是必不可少的,但对于激动剂诱导的受体激活和cAMP抑制作用却是必不可少的。功能上,缺少这种复杂形成域的钮扣显示受损的Ca(2+)瞬态和突触囊泡释放的突触前抑制。因此,在海马突触中进行突触前抑制需要GABA(B1a)受体,Gbetagamma和Ca(V)2.2通道在信号传导复合物中的区室化。

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