Camiré Olivier, Lacaille Jean-Claude, Topolnik Lisa
Department of Biochemistry, Microbiology and Bioinformatics, Axis of Cellular and Molecular Neuroscience, CRIUSMQ, Université Laval Québec, PQ, Canada.
Front Physiol. 2012 Jul 9;3:259. doi: 10.3389/fphys.2012.00259. eCollection 2012.
Communication between neurons is achieved by rapid signal transduction via highly specialized structural elements known as synaptic contacts. In addition, numerous extrasynaptic mechanisms provide a flexible platform for the local regulation of synaptic signals. For example, peri- and extra-synaptic signaling through the group I metabotropic glutamate receptors (mGluRs) can be involved in the highly compartmentalized regulation of dendritic ion conductances, the induction of input-specific synaptic plasticity, and the local release of retrograde messengers. Therefore, extrasynaptic mechanisms appear to play a key role in the local tuning of dendritic computations. Here, we review recent findings on the role of group I mGluRs in the dendritic signaling of inhibitory interneurons. We propose that group I mGluRs provide a dual-mode signaling device that integrates different patterns of neural activity. By implementing distinct forms of intrinsic and synaptic regulation, group I mGluRs may be responsible for the local fine-tuning of dendritic function.
神经元之间的通讯是通过经由被称为突触接触的高度特化结构元件进行快速信号转导来实现的。此外,众多突触外机制为突触信号的局部调节提供了一个灵活的平台。例如,通过I型代谢型谷氨酸受体(mGluRs)进行的突触周围和突触外信号传导可参与树突离子电导的高度分区调节、输入特异性突触可塑性的诱导以及逆行信使的局部释放。因此,突触外机制似乎在树突计算的局部调节中起关键作用。在这里,我们综述了关于I型mGluRs在抑制性中间神经元树突信号传导中作用的最新发现。我们提出,I型mGluRs提供了一种整合不同神经活动模式的双模式信号装置。通过实施不同形式的内在和突触调节,I型mGluRs可能负责树突功能的局部微调。