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肌肉梭内机械感觉的分子决定因素。

Molecular determinants of mechanosensation in the muscle spindle.

机构信息

Department of Biological Sciences, San José State University, San Jose, CA, USA.

出版信息

Curr Opin Neurobiol. 2022 Jun;74:102542. doi: 10.1016/j.conb.2022.102542. Epub 2022 Apr 14.

Abstract

The muscle spindle (MS) provides essential sensory information for motor control and proprioception. The Group Ia and II MS afferents are low threshold slowly-adapting mechanoreceptors and report both static muscle length and dynamic muscle movement information. The exact molecular mechanism by which MS afferents transduce muscle movement into action potentials is incompletely understood. This short review will discuss recent evidence suggesting that PIEZO2 is an essential mechanically sensitive ion channel in MS afferents and that vesicle-released glutamate contributes to maintaining afferent excitability during the static phase of stretch. Other mechanically gated ion channels, voltage-gated sodium channels, other ion channels, regulatory proteins, and interactions with the intrafusal fibers are also important for MS afferent mechanosensation. Future studies are needed to fully understand mechanosensation in the MS and whether different complements of molecular mediators contribute to the different response properties of Group Ia and II afferents.

摘要

肌梭(MS)为运动控制和本体感觉提供基本的感觉信息。Ia 群和 II 群肌梭传入纤维是低阈值、慢适应机械感受器,既能报告静态肌肉长度,又能报告动态肌肉运动信息。肌梭传入纤维将肌肉运动转换为动作电位的确切分子机制尚不完全清楚。这篇简短的综述将讨论最近的证据,表明 PIEZO2 是肌梭传入纤维中必不可少的机械敏感离子通道,而囊泡释放的谷氨酸有助于在伸展的静态阶段维持传入纤维的兴奋性。其他机械门控离子通道、电压门控钠通道、其他离子通道、调节蛋白以及与肌梭内纤维的相互作用,对于肌梭传入纤维的机械感觉也很重要。需要进一步的研究来全面了解肌梭的机械感觉,以及不同的分子介质是否有助于 Ia 群和 II 群传入纤维的不同反应特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/110e/9815952/961e7688eb4a/nihms-1858759-f0001.jpg

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