首页> 外文期刊>The Journal of Physiology >Group I metabotropic glutamate receptors activate a calcium-sensitive transient receptor potential-like conductance in rat hippocampus.
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Group I metabotropic glutamate receptors activate a calcium-sensitive transient receptor potential-like conductance in rat hippocampus.

机译:第一组代谢型谷氨酸受体激活大鼠海马中钙敏感的瞬态受体电位样电导。

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In CA3 pyramidal neurons from organotypic slice cultures, activation of G(q)-coupled group I metabotropic glutamate receptors (mGluRs) induces a non-selective cationic conductance that enhances excitability. We have found that this response shares several properties with conductances that are mediated by the transient receptor potential (TRP) family of ion channels, including inhibition by La(3+), 2-aminoethoxydiphenylborane (2APB), cis-N-(2-phenylcyclopentyl)azacyclotridec-1-en-2-amine (MDL 12,330A) and a doubly rectifying current-voltage relationship. Stimulation of mGluR1 and mGluR5 converged to activate the TRP-like conductance in a synergistic manner, and activation of either subtype alone produced only a fraction of the normal response. Activation of the cationic current required elevated intracellular Ca(2+). Chelating intracellular Ca(2+) or blocking Ca(2+) entry through voltage-gated Ca(2+) channels attenuated responses to the activation of mGluRs. Conversely, raising intracellular Ca(2+) potentiated mGluR activation of the TRP-like conductance. Under control conditions, blocking G protein activation using intracellular GDPbetaS with or without N-(2, 6-dimethylphenylcarbamoylmethyl) triethylammonium chloride (QX-314) prevented mGluR-mediated activation of the TRP-like conductance. Following G protein blockade, however, the coupling between mGluRs 1 and/or 5 and the TRP-like conductance was rescued by increasing intracellular Ca(2+). This suggests that a G protein-independent signalling pathway is also activated by group I mGluRs. Such a pathway may represent an alternative transduction mechanism to maintain metabotropic responses under conditions where G proteins are functionally uncoupled from their cognate receptors.
机译:在来自器官型切片培养的CA3锥体神经元中,G(q)偶联的I组代谢型谷氨酸受体(mGluRs)的激活诱导非选择性阳离子电导,从而增强了兴奋性。我们已经发现,此响应与离子通道的瞬时受体电势(TRP)家族介导的电导共享多个属性,包括被La(3 +),2-氨基乙氧基二苯基硼烷(2APB),顺式-N-(2-苯基环戊基)氮杂环三癸-1-烯-2-胺(MDL 12,330A)和双整流电流-电压关系。 mGluR1和mGluR5的刺激以协同方式收敛以激活TRP样电导,单独激活任一亚型仅产生正常响应的一小部分。阳离子电流的激活需要提高细胞内Ca(2+)。螯合细胞内Ca(2+)或阻止Ca(2+)通过电压门控Ca(2+)通道进入减弱了对mGluRs激活的响应。相反,提高细胞内Ca(2+)增强了TRP样电导的mGluR激活。在控制条件下,使用含或不含N-(2,6-二甲基苯基氨基甲酰基甲基)三乙基氯化铵(QX-314)的细胞内GDPbetaS阻断G蛋白活化,可防止mGluR介导的TRP样电导活化。 G蛋白封锁后,然而,mGluRs 1和/或5与TRP样电导之间的偶联通过增加细胞内Ca(2+)得以拯救。这表明不依赖G蛋白的信号传导途径也被I类mGluR激活。这种途径可能代表了一种替代的转导机制,可在G蛋白功能上与其同源受体不偶联的条件下维持代谢反应。

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