Please use this identifier to cite or link to this item: https://hdl.handle.net/11000/38916

USH2A is a Meissner’s corpuscle protein necessary for normal vibration sensing in mice and humans


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Title:
USH2A is a Meissner’s corpuscle protein necessary for normal vibration sensing in mice and humans
Authors:
Schwaller, Fred
Bégay, Valérie
García-García, Gema
Taberner, Francisco J
moshourab, rabih
McDonald, Brennan
Docter, Trevor  
Kühnemund, Johannes
Ojeda-Alonso, Julia  
Paricio-Montesinos, Ricardo  
Lechner, Stefan G.
Poulet, James F. A.
Millan, Jose M
Lewin, Gary R
Editor:
Nature
Issue Date:
2021-01
URI:
https://hdl.handle.net/11000/38916
Abstract:
Fingertip mechanoreceptors comprise sensory neuron endings together with specialized skin cells that form the end-organ. Exquisitely sensitive, vibration-sensing neurons are associated with Meissner's corpuscles in the skin. In the present study, we found that USH2A, a transmembrane protein with a very large extracellular domain, was found in terminal Schwann cells within Meissner's corpuscles. Pathogenic USH2A mutations cause Usher's syndrome, associated with hearing loss and visual impairment. We show that patients with biallelic pathogenic USH2A mutations also have clear and specific impairments in vibrotactile touch perception, as do mutant mice lacking USH2A. Forepaw rapidly adapting mechanoreceptors innervating Meissner's corpuscles, recorded from Ush2a-/- mice, showed large reductions in vibration sensitivity. However, the USH2A protein was not found in sensory neurons. Thus, loss of USH2A in corpuscular end-organs reduced mechanoreceptor sensitivity as well as vibration perception. Thus, a tether-like protein is required to facilitate detection of small-amplitude vibrations essential for the perception of fine-grained tactile surfaces.
Keywords/Subjects:
vibration-sensing neurons
Pathogenic USH2A mutations
Type of document:
info:eu-repo/semantics/article
Access rights:
info:eu-repo/semantics/closedAccess
Attribution-NonCommercial-NoDerivatives 4.0 Internacional
DOI:
10.1038/s41593-020-00751-y
Published in:
Nat Neurosci . 2021 Jan;24(1):74-81
Appears in Collections:
Instituto de Neurociencias



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