Ziolkowski Luke H, Nikolaev Yury A, Chikamoto Akitoshi, Oda Mai, Feketa Viktor V, Monedero-Alonso David, Ardasheva Serafima A, Bae Samuel S, Xu C Shan, Pang Song, Gracheva Elena O, Bagriantsev Sviatoslav N
Department of Cellular and Molecular Physiology, Yale University School of Medicine, New Haven, CT 06520, USA.
Department of Neuroscience, Yale University School of Medicine, New Haven, CT 06520, USA.
bioRxiv. 2024 Aug 26:2024.08.24.609509. doi: 10.1101/2024.08.24.609509.
Pacinian corpuscles are rapidly adapting mechanoreceptor end-organs that detect transient touch and high-frequency vibration. In the prevailing model, these properties are determined by the outer core, which acts as a mechanical filter limiting static and low-frequency stimuli from reaching the afferent terminal-the sole site of touch detection in corpuscles. Here, we determine the detailed 3D architecture of corpuscular components and reveal their contribution to touch detection. We show that the outer core is dispensable for rapid adaptation and frequency tuning. Instead, these properties arise from the inner core, composed of gap junction-coupled lamellar Schwann cells (LSCs) surrounding the afferent terminal. By acting as additional touch sensing structures, LSCs potentiate mechanosensitivity of the terminal, which detects touch via fast-inactivating ion channels. We propose a model in which Pacinian corpuscle function is mediated by an interplay between mechanosensitive LSCs and the afferent terminal in the inner core.
帕西尼小体是快速适应的机械感受器终末器官,可检测瞬时触觉和高频振动。在当前模型中,这些特性由外核决定,外核充当机械滤波器,限制静态和低频刺激到达传入终末——小体中唯一的触觉检测部位。在这里,我们确定了小体成分的详细三维结构,并揭示了它们对触觉检测的贡献。我们发现,快速适应和频率调谐并不依赖外核。相反,这些特性源于内核,内核由围绕传入终末的缝隙连接耦合的层状施万细胞(LSCs)组成。通过充当额外的触觉传感结构,LSCs增强了终末的机械敏感性,终末通过快速失活的离子通道检测触觉。我们提出了一个模型,其中帕西尼小体的功能由内核中机械敏感的LSCs和传入终末之间的相互作用介导。