Evidence for the involvement of ASIC3 in sensory mechanotransduction in proprioceptors

Доказательства участия ASIC3 в сенсорной механотрансдукции проприорецепторов
Shing-Hong Lin, Yuan-Ren Cheng, Robert W. Banks, Ming‐Yuan Min, Guy S. Bewick, Chih‐Cheng Chen
2016-05-10

ASIC3muscle spindlesparvalbumin-positive DRG neuronsproprioceptorssensory mechanotransduction
Acid-sensing ion channel 3 (ASIC3) is involved in acid nociception, but its possible role in neurosensory mechanotransduction is disputed. We report here the generation of Asic3-knockout/eGFPf-knockin mice and subsequent characterization of heterogeneous expression of ASIC3 in the dorsal root ganglion (DRG). ASIC3 is expressed in parvalbumin (Pv+) proprioceptor axons innervating muscle spindles. We further generate a floxed allele of Asic3 (Asic3(f/f)) and probe the role of ASIC3 in mechanotransduction in neurite-bearing Pv+ DRG neurons through localized elastic matrix movements and electrophysiology. Targeted knockout of Asic3 disrupts spindle afferent sensitivity to dynamic stimuli and impairs mechanotransduction in Pv+ DRG neurons because of substrate deformation-induced neurite stretching, but not to direct neurite indentation. In behavioural tasks, global knockout (Asic3(-/-)) and Pv-Cre::Asic3(f/f) mice produce similar deficits in grid and balance beam walking tasks. We conclude that, at least in mouse, ASIC3 is a molecular determinant contributing to dynamic mechanosensitivity in proprioceptors.
1
ASIC3 contributes to dynamic mechanosensitivity in mouse proprioceptors and is a molecular determinant of sensory mechanotransduction.
2
ASIC3 is heterogeneously expressed in dorsal root ganglia, including parvalbumin-positive proprioceptor axons innervating muscle spindles.
3
ASIC3 loss impairs mechanotransduction in parvalbumin-positive DRG neurons during substrate deformation-induced neurite stretching, but not direct neurite indentation.
4
Global and proprioceptor-specific ASIC3 knockout mice show similar deficits in grid walking and balance-beam performance.
5
Targeted ASIC3 deletion disrupts muscle-spindle afferent sensitivity to dynamic mechanical stimuli.

ASIC3-expressing proprioceptors, including muscle spindle afferents and parvalbumin-positive dorsal root ganglion neurons, in mice

ASIC3-dependent dynamic mechanotransduction and mechanosensitivity, including responses to substrate deformation-induced neurite stretching versus direct neurite indentation

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2016-05-10
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Shing-Hong Lin
Yuan-Ren Cheng
Robert W. Banks
Ming‐Yuan Min
Guy S. Bewick
Chih‐Cheng Chen
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