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代谢型谷氨酸受体对腰段运动神经元的发育调控:新生小鼠的细胞与行为分析

Developmentally Regulated Modulation of Lumbar Motoneurons by Metabotropic Glutamate Receptors: A Cellular and Behavioral Analysis in Newborn Mice.

作者信息

Quilgars Camille, Cazalets Jean-René, Bertrand Sandrine S

机构信息

Institut de Neurosciences Cognitives et Intégratives d'Aquitaine (INCIA), CNRS UMR 5287, Université de Bordeaux, Bordeaux, France.

Ecole Pratique des Hautes Etudes (EPHE), Paris Sciences et Lettres University, Paris, France.

出版信息

Front Cell Neurosci. 2021 Dec 9;15:770250. doi: 10.3389/fncel.2021.770250. eCollection 2021.

Abstract

The present study explores the impact of metabotropic glutamate receptor (mGluR) activation on activity-dependent synaptic plasticity (ADSP) and the intrinsic membrane properties of lumbar motoneurons (MNs) using a combination of biochemical, pharmacological, electrophysiological and behavioral techniques. Using spinal cord slices from C57BL/6JRJ mice at two developmental stages, 1-3 and 8-12 postnatal days (P1-P3; P8-P12, respectively), we found that ADSP expressed at glutamatergic synapses between axons conveyed in the ventrolateral funiculus (VLF) and MNs, involved mGluR activation. Using specific agonists of the three groups of mGluRs, we observed that mGluR stimulation causes subtype-specific and developmentally regulated modulation of the ADSP and synaptic transmission at VLF-MN synapses as well as the intrinsic membrane properties of MNs. RT-qPCR analysis revealed a downregulation of mGluR gene expression with age in the ventral part of the lumbar spinal cord. Interestingly, the selective harvest by laser microdissection of MNs innervating the and muscles unraveled that the level of Grm2 expression is higher in MNs compared to MNs suggesting a specific mGluR gene expression profile in these two MN pools. Finally, we assessed the functional impact of mGluR modulation on electrically induced bouts of fictive locomotion in the isolated spinal cord preparation of P1-P3 mice, and during spontaneous episodes of swimming activity in both P1-P3 and P8-P12 mouse pups. We observed that the mGluR agonists induced distinct and specific effects on the motor burst amplitudes and period of the locomotor rhythms tested and that their actions are function of the developmental stage of the animals. Altogether our data show that the metabotropic glutamatergic system exerts a complex neuromodulation in the developing spinal lumbar motor networks and provide new insights into the expression and modulation of ADSP in MNs.

摘要

本研究结合生化、药理学、电生理学和行为学技术,探讨代谢型谷氨酸受体(mGluR)激活对活动依赖性突触可塑性(ADSP)以及腰段运动神经元(MNs)固有膜特性的影响。利用两个发育阶段(分别为出生后1 - 3天和8 - 12天,即P1 - P3和P8 - P12)的C57BL/6JRJ小鼠的脊髓切片,我们发现,在腹外侧索(VLF)中传导的轴突与MNs之间的谷氨酸能突触处表达的ADSP涉及mGluR激活。使用三组mGluR的特异性激动剂,我们观察到mGluR刺激会导致VLF - MN突触处ADSP和突触传递以及MNs固有膜特性的亚型特异性和发育调节性调制。RT - qPCR分析显示,腰段脊髓腹侧mGluR基因表达随年龄下调。有趣的是,通过激光显微切割选择性收获支配特定肌肉的MNs发现,与另一组MNs相比,某组MNs中Grm2表达水平更高,这表明这两个MN池中有特定的mGluR基因表达谱。最后,我们评估了mGluR调制对P1 - P3小鼠离体脊髓制备中电诱导的虚拟运动发作的功能影响,以及对P1 - P3和P8 - P12小鼠幼崽游泳活动自发发作期间的功能影响。我们观察到,mGluR激动剂对所测试的运动爆发幅度和运动节律周期产生了不同且特定的影响,并且它们的作用是动物发育阶段的函数。总之,我们的数据表明,代谢型谷氨酸能系统在发育中的脊髓腰段运动网络中发挥复杂的神经调节作用,并为MNs中ADSP的表达和调制提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ac2/8699010/9ed0df8234a2/fncel-15-770250-g001.jpg

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