Santiago Celine, Siegrist Julianna, Africawala Nusrat, Handler Annie, Tasnim Aniqa, Anjum Rabia, Turecek Josef, Lehnert Brendan P, Renauld Sophia, Choi Jinheon, Nolan-Tamariz Michael, Iskols Michael, Magee Alexandra R, Paradis Suzanne, Sharma Nikhil, Ginty David D
Department of Neurobiology, Howard Hughes Medical Institute, Harvard Medical School, Boston, MA 02115, USA.
Department of Biology and Volen Center for Complex Systems, Brandeis University, Waltham, MA 02453, USA.
Neuron. 2025 Jun 4;113(11):1758-1773.e9. doi: 10.1016/j.neuron.2025.04.015. Epub 2025 May 16.
We report a role for activity in the development of the primary sensory neurons that detect touch. Genetic deletion of Piezo2, the principal mechanosensitive ion channel in somatosensory neurons, caused profound changes in the formation of mechanosensory end-organ structures. Peripheral-nervous-system-specific deletion of the voltage-gated sodium channel Na1.6 (Scn8a), which resulted in altered electrophysiological responses to mechanical stimuli, also disrupted somatosensory neuron morphologies, supporting a role for neuronal activity in end-organ formation. Single-cell RNA sequencing of Piezo2 mutants revealed changes in gene expression in sensory neurons activated by light mechanical forces, whereas other neuronal classes were minimally affected, and genetic deletion of Piezo2-dependent genes partially reproduced the defects in mechanosensory neuron structures observed in Piezo2 mutants. These findings indicate that mechanically evoked neuronal activity acts early in life to shape the maturation of mechanosensory end-organs that underlie our sense of gentle touch.
我们报告了活动在检测触觉的初级感觉神经元发育中的作用。体感神经元中的主要机械敏感离子通道Piezo2的基因缺失,导致机械感觉终末器官结构形成发生深刻变化。电压门控钠通道Na1.6(Scn8a)的外周神经系统特异性缺失,导致对机械刺激的电生理反应改变,也破坏了体感神经元形态,支持神经元活动在终末器官形成中的作用。Piezo2突变体的单细胞RNA测序揭示了由轻微机械力激活的感觉神经元中基因表达的变化,而其他神经元类别受影响最小,并且Piezo2依赖性基因的基因缺失部分再现了Piezo2突变体中观察到的机械感觉神经元结构缺陷。这些发现表明,机械诱发的神经元活动在生命早期起作用,以塑造构成我们轻触觉基础的机械感觉终末器官的成熟。