Ye Zhanlei, Goutman Juan D, Pyott Sonja J, Glowatzki Elisabeth
Center for Brain Science, Department of Molecular Cellular Biology, Harvard University, 52 Oxford Street, Cambridge, MA, 02138, USA.
Instituto de Investigaciones en Ingeniería Genética y Biología Molecular (CONICET), Vuelta de Obligado 2490, 1428, C. A. Buenos Aires, Argentina.
J Physiol. 2017 Jun 1;595(11):3483-3495. doi: 10.1113/JP272604. Epub 2017 Apr 21.
Spontaneous activity of the sensory inner hair cells shapes maturation of the developing ascending (afferent) auditory system before hearing begins. Just before the onset of hearing, descending (efferent) input from cholinergic neurons originating in the brainstem inhibit inner hair cell spontaneous activity and may further refine maturation. We show that agonist activation of the group I metabotropic glutamate receptor mGluR1 increases the strength of this efferent inhibition by enhancing the presynaptic release of acetylcholine. We further show that the endogenous release of glutamate from the inner hair cells may increase the strength of efferent inhibition via the activation of group I metabotropic glutamate receptors. Thus, before the onset of hearing, metabotropic glutamate signalling establishes a local negative feedback loop that is positioned to regulate inner hair cell excitability and refine maturation of the auditory system.
Just before the onset of hearing, the inner hair cells (IHCs) receive inhibitory efferent input from cholinergic medial olivocochlear (MOC) neurons originating in the brainstem. This input may serve a role in the maturation of the ascending (afferent) auditory system by inhibiting spontaneous activity of the IHCs. To investigate the molecular mechanisms regulating these IHC efferent synapses, we combined electrical stimulation of the efferent fibres with patch clamp recordings from the IHCs to measure efferent synaptic strength. By examining evoked responses, we show that activation of metabotropic glutamate receptors (mGluRs) by general and group I-specific mGluR agonists enhances IHC efferent inhibition. This enhancement is blocked by application of a group I mGluR1-specific antagonist, indicating that enhancement of IHC efferent inhibition is mediated by group I mGluRs and specifically by mGluR1s. By comparing spontaneous and evoked responses, we show that group I mGluR agonists act presynaptically to increase neurotransmitter release without affecting postsynaptic responsiveness. Moreover, endogenous glutamate released from the IHCs also enhances IHC efferent inhibition via the activation of group I mGluRs. Finally, immunofluorescence analysis indicates that the efferent terminals are sufficiently close to IHC glutamate release sites to allow activation of mGluRs on the efferent terminals by glutamate spillover. Together, these results suggest that glutamate released from the IHCs activates group I mGluRs (mGluR1s), probably present on the efferent terminals, which, in turn, enhances release of acetylcholine and inhibition of the IHCs. Thus, mGluRs establish a local negative feedback loop positioned to regulate IHC activity and maturation of the ascending auditory system in the developing cochlea.
在听力开始之前,感觉性内毛细胞的自发活动塑造了发育中的上行(传入)听觉系统的成熟。就在听力开始之前,源自脑干的胆碱能神经元的下行(传出)输入抑制内毛细胞的自发活动,并可能进一步完善成熟过程。我们发现,I 型代谢型谷氨酸受体 mGluR1 的激动剂激活通过增强乙酰胆碱的突触前释放来增加这种传出抑制的强度。我们进一步表明,内毛细胞内源性谷氨酸的释放可能通过激活 I 型代谢型谷氨酸受体来增加传出抑制的强度。因此,在听力开始之前,代谢型谷氨酸信号建立了一个局部负反馈回路,该回路旨在调节内毛细胞的兴奋性并完善听觉系统的成熟。
就在听力开始之前,内毛细胞(IHC)从源自脑干的胆碱能内侧橄榄耳蜗(MOC)神经元接收抑制性传出输入。这种输入可能通过抑制 IHC 的自发活动在上升(传入)听觉系统的成熟中发挥作用。为了研究调节这些 IHC 传出突触的分子机制,我们将传出纤维的电刺激与 IHC 的膜片钳记录相结合,以测量传出突触强度。通过检查诱发反应,我们发现一般和 I 型特异性 mGluR 激动剂对代谢型谷氨酸受体(mGluR)的激活增强了 IHC 传出抑制。I 型 mGluR1 特异性拮抗剂的应用阻断了这种增强,表明 IHC 传出抑制的增强是由 I 型 mGluR 介导的,特别是由 mGluR1 介导的。通过比较自发反应和诱发反应,我们发现 I 型 mGluR 激动剂在突触前起作用以增加神经递质释放,而不影响突触后反应性。此外,内毛细胞释放出之的内源性谷氨酸也通过激活 I 型 mGluR 增强了 IHC 传出抑制。最后,免疫荧光分析表明,传出终末与 IHC 谷氨酸释放位点足够接近,以允许谷氨酸溢出激活传出终末上的 mGluR。总之,这些结果表明,内毛细胞释放的谷氨酸激活了可能存在于传出终末上的 I 型 mGluR(mGluR1),进而增强了乙酰胆碱的释放和对 IHC 的抑制。因此,mGluR 建立了一个局部负反馈回路,可以调节发育中的耳蜗内 IHC 的活动和上行听觉系统的成熟。