de Nooij Joriene C, Simon Christian M, Simon Anna, Doobar Staceyann, Steel Karen P, Banks Robert W, Mentis George Z, Bewick Guy S, Jessell Thomas M
Departments of Neuroscience, and Biochemistry and Molecular Biophysics,
Pathology and Cell Biology, Motor Neuron Center for Biology and Disease.
J Neurosci. 2015 Feb 18;35(7):3073-84. doi: 10.1523/JNEUROSCI.3699-14.2015.
Mechanoreception is an essential feature of many sensory modalities. Nevertheless, the mechanisms that govern the conversion of a mechanical force to distinct patterns of action potentials remain poorly understood. Proprioceptive mechanoreceptors reside in skeletal muscle and inform the nervous system of the position of body and limbs in space. We show here that Whirlin/Deafness autosomal recessive 31 (DFNB31), a PDZ-scaffold protein involved in vestibular and auditory hair cell transduction, is also expressed by proprioceptive sensory neurons (pSNs) in dorsal root ganglia in mice. Whirlin localizes to the peripheral sensory endings of pSNs and facilitates pSN afferent firing in response to muscle stretch. The requirement of Whirlin in both proprioceptors and hair cells suggests that accessory mechanosensory signaling molecules define common features of mechanoreceptive processing across sensory systems.
机械感受是多种感觉模态的一个基本特征。然而,关于将机械力转化为不同动作电位模式的机制,我们仍然知之甚少。本体感受机械感受器存在于骨骼肌中,并向神经系统传递身体和四肢在空间中的位置信息。我们在此表明,Whirlin/常染色体隐性遗传性耳聋31(DFNB31),一种参与前庭和听觉毛细胞转导的PDZ支架蛋白,在小鼠背根神经节的本体感受感觉神经元(pSNs)中也有表达。Whirlin定位于pSNs的外周感觉末梢,并促进pSNs在肌肉拉伸时的传入放电。Whirlin在本体感受器和毛细胞中的需求表明,辅助机械感觉信号分子定义了跨感觉系统的机械感受处理的共同特征。