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代谢型GABA能信号传导和钙诱导钙释放机制在调节冷痛觉中的模态特异性作用。

Modality specific roles for metabotropic GABAergic signaling and calcium induced calcium release mechanisms in regulating cold nociception.

作者信息

Patel Atit A, Sakurai Akira, Himmel Nathaniel J, Cox Daniel N

机构信息

Neuroscience Institute, Georgia State University, Atlanta, GA, United States.

出版信息

Front Mol Neurosci. 2022 Sep 9;15:942548. doi: 10.3389/fnmol.2022.942548. eCollection 2022.

Abstract

Calcium (Ca) plays a pivotal role in modulating neuronal-mediated responses to modality-specific sensory stimuli. Recent studies in reveal class III (CIII) multidendritic (md) sensory neurons function as multimodal sensors regulating distinct behavioral responses to innocuous mechanical and nociceptive thermal stimuli. Functional analyses revealed CIII-mediated multimodal behavioral output is dependent upon activation levels with stimulus-evoked Ca displaying relatively low vs. high intracellular levels in response to gentle touch vs. noxious cold, respectively. However, the mechanistic bases underlying modality-specific differential Ca responses in CIII neurons remain incompletely understood. We hypothesized that noxious cold-evoked high intracellular Ca responses in CIII neurons may rely upon Ca induced Ca release (CICR) mechanisms involving transient receptor potential (TRP) channels and/or metabotropic G protein coupled receptor (GPCR) activation to promote cold nociceptive behaviors. Mutant and/or CIII-specific knockdown of GPCR and CICR signaling molecules [GABA -R2, Gαq, phospholipase C, ryanodine receptor (RyR) and Inositol trisphosphate receptor (IPR)] led to impaired cold-evoked nociceptive behavior. GPCR mediated signaling, through GABA -R2 and IPR, is not required in CIII neurons for innocuous touch evoked behaviors. However, CICR RyR is required for innocuous touch-evoked behaviors. Disruptions in , , and in CIII neurons leads to significantly lower levels of cold-evoked Ca responses indicating GPCR and CICR signaling mechanisms function in regulating Ca release. CIII neurons exhibit bipartite cold-evoked firing patterns, where CIII neurons burst during rapid temperature change and tonically fire during steady state cold temperatures. knockdown in CIII neurons resulted in disorganized firing patterns during cold exposure. We further demonstrate that application of GABA or the GABA specific agonist baclofen potentiates cold-evoked CIII neuron activity. Upon ryanodine application, CIII neurons exhibit increased bursting activity and with CIII-specific knockdown, there is an increase in cold-evoked tonic firing and decrease in bursting. Lastly, our previous studies implicated the TRPP channel Pkd2 in cold nociception, and here, we show that and genetically interact to specifically regulate cold-evoked behavior, but not innocuous mechanosensation. Collectively, these analyses support novel, modality-specific roles for metabotropic GABAergic signaling and CICR mechanisms in regulating intracellular Ca levels and cold-evoked behavioral output from multimodal CIII neurons.

摘要

钙(Ca)在调节神经元介导的对特定感觉刺激的反应中起关键作用。最近的研究表明,III类(CIII)多树突状(md)感觉神经元作为多模式传感器,调节对无害机械刺激和伤害性热刺激的不同行为反应。功能分析显示,CIII介导的多模式行为输出取决于激活水平,刺激诱发的Ca在分别响应轻触和有害寒冷时,细胞内水平相对较低与较高。然而,CIII神经元中特定模式的差异性Ca反应背后的机制基础仍未完全了解。我们假设,CIII神经元中有害寒冷诱发的高细胞内Ca反应可能依赖于钙诱导钙释放(CICR)机制,该机制涉及瞬时受体电位(TRP)通道和/或代谢型G蛋白偶联受体(GPCR)激活,以促进冷痛觉行为。GPCR和CICR信号分子[GABA -R2、Gαq、磷脂酶C、兰尼碱受体(RyR)和肌醇三磷酸受体(IPR)]的突变和/或CIII特异性敲低导致冷诱发的伤害性行为受损。在CIII神经元中,无害轻触诱发的行为不需要通过GABA -R2和IPR介导的GPCR信号传导。然而,无害轻触诱发的行为需要CICR RyR。CIII神经元中、和的破坏导致冷诱发的Ca反应水平显著降低,表明GPCR和CICR信号机制在调节Ca释放中起作用。CIII神经元表现出二分的冷诱发放电模式,即CIII神经元在快速温度变化期间爆发,在稳定状态冷温度期间持续放电。CIII神经元中的敲低导致冷暴露期间放电模式紊乱。我们进一步证明,应用GABA或GABA特异性激动剂巴氯芬可增强冷诱发的CIII神经元活性。应用兰尼碱后,CIII神经元表现出爆发活动增加,而CIII特异性敲低后,冷诱发的持续放电增加,爆发减少。最后,我们之前的研究表明TRPP通道Pkd2参与冷痛觉,在这里,我们表明和在基因上相互作用,以特异性调节冷诱发的行为,但不调节无害机械感觉。总的来说,这些分析支持了代谢型GABA能信号传导和CICR机制在调节细胞内Ca水平和多模式CIII神经元的冷诱发行为输出中的新的、特定模式的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/818e/9502035/758bece941f9/fnmol-15-942548-g001.jpg

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