机械转化
粘合连接
机械感受器
神经科学
轴突
生物
感觉系统
解剖
轴突引导
钙粘蛋白
细胞
遗传学
作者
Annie Handler,Qiyu Zhang,Song Pang,Tri Nguyen,Michael Iskols,Michael Nolan-Tamariz,Stuart Cattel,Rebecca Plumb,Brianna Sanchez,Karyl Ashjian,Aria Shotland,Bartianna Brown,Madiha Kabeer,Josef Turecek,Michelle M. DeLisle,Genelle Rankin,Wangchu Xiang,Elisa C. Pavarino,Nusrat Africawala,Celine Santiago
出处
期刊:Neuron
[Cell Press]
日期:2023-09-18
卷期号:111 (20): 3211-3229.e9
被引量:30
标识
DOI:10.1016/j.neuron.2023.08.023
摘要
Across mammalian skin, structurally complex and diverse mechanosensory end organs respond to mechanical stimuli and enable our perception of dynamic, light touch. How forces act on morphologically dissimilar mechanosensory end organs of the skin to gate the requisite mechanotransduction channel Piezo2 and excite mechanosensory neurons is not understood. Here, we report high-resolution reconstructions of the hair follicle lanceolate complex, Meissner corpuscle, and Pacinian corpuscle and the subcellular distribution of Piezo2 within them. Across all three end organs, Piezo2 is restricted to the sensory axon membrane, including axon protrusions that extend from the axon body. These protrusions, which are numerous and elaborate extensively within the end organs, tether the axon to resident non-neuronal cells via adherens junctions. These findings support a unified model for dynamic touch in which mechanical stimuli stretch hundreds to thousands of axon protrusions across an end organ, opening proximal, axonal Piezo2 channels and exciting the neuron.
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