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在野生型和症状前SOD1小鼠中,脊髓运动神经元兴奋性通过β-肾上腺素能神经调节进行稳态调节。

Spinal motoneuron excitability is homeostatically-regulated through β-adrenergic neuromodulation in wild-type and presymptomatic SOD1 mice.

作者信息

Antonucci Stefano, Caron Guillaume, Dikwella Natalie, Krishnamurty Sruthi Sankari, Harster Anthony, Zarrin Hina, Tahanis Aboud, Heuvel Florian Olde, Danner Simon M, Ludolph Albert C, Grycz Kamil, Bączyk Marcin, Zytnicki Daniel, Roselli Francesco

机构信息

Dept. of Neurology, Ulm University, Ulm, DE.

Université Paris Cité, CNRS, Saints-Pères Paris Institute for the Neurosciences, Paris, France.

出版信息

bioRxiv. 2024 Dec 20:2024.03.25.586570. doi: 10.1101/2024.03.25.586570.

Abstract

Homeostatic feedback loops are essential to stabilize the activity of neurons and neuronal networks. It has been hypothesized that, in the context of Amyotrophic Lateral Sclerosis (ALS), an excessive gain in feedback loops might hyper- or hypo-excite motoneurons (MNs) and contribute to the pathogenesis. Here, we investigated how the neuromodulation of MN intrinsic properties is homeostatically controlled in presymptomatic adult SOD1(G93A) mice and in the age-matched control WT mice. First, we determined that β2 and β3- adrenergic receptors, which are Gs-coupled receptors and subject to tight and robust feedback loops, are specifically expressed in spinal MNs of both SOD1 and WT mice at P45. We then demonstrated that these receptors elicit a so-far overlooked neuromodulation of the firing and excitability properties of MNs. These electrical properties are homeostatically regulated following receptor engagement, which triggers ion channel transcriptional changes and downregulates those receptors. These homeostatic feedbacks are not dysregulated in presymptomatic SOD1 mice, and they set the MN excitability upon β-adrenergic neuromodulation.

摘要

稳态反馈回路对于稳定神经元和神经网络的活动至关重要。据推测,在肌萎缩侧索硬化症(ALS)的背景下,反馈回路的过度增益可能会使运动神经元(MNs)过度兴奋或兴奋不足,并导致发病机制。在这里,我们研究了在症状前成年SOD1(G93A)小鼠和年龄匹配的对照野生型(WT)小鼠中,MN内在特性的神经调节是如何通过稳态进行控制的。首先,我们确定β2和β3肾上腺素能受体是与Gs偶联的受体,并且受到紧密而强大的反馈回路的影响,在P45时在SOD1和WT小鼠的脊髓MN中特异性表达。然后我们证明这些受体引发了迄今为止被忽视的MN放电和兴奋性特性的神经调节。这些电特性在受体结合后通过稳态调节,这会触发离子通道转录变化并下调这些受体。这些稳态反馈在症状前SOD1小鼠中没有失调,并且它们在β肾上腺素能神经调节时设定了MN的兴奋性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2934/11731107/b10b3d477aa3/nihpp-2024.03.25.586570v3-f0001.jpg

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