Department of Neuroscience II, Research Institute of Environmental Medicine, Nagoya University, Nagoya, Aichi, Japan.
Department of Biomedical Sciences, College of Life and Health Sciences, Chubu University, Kasugai, Aichi, Japan.
Sci Rep. 2018 Nov 14;8(1):16782. doi: 10.1038/s41598-018-35049-4.
Mechanotransduction plays important roles in many sensory processes, including touch, pain, hearing, and proprioception. However, the molecular mechanisms of mechanical nociception have remained unclear. Here, we showed that elimination of transient receptor potential vanilloid 2 (TRPV2) in mice resulted in the deficit of mechanical nociception due to the lack of mechanosensitivity in a subclass of adult primary sensory neurons (PSNs). The PSN-specific TRPV2-deficient mice showed behavioural impairment of mechanical nociception in tail-pressure and von Frey hair tests, without defects in axonal growth and neuronal composition. Conversely, the mice displayed normal behaviour to noxious heat and non-noxious tactile stimuli. Furthermore, based on the stretch-evoked Ca response of cultured PSNs, we characterised two types of stretch-activated neurons in normal mice; fast-decay high-threshold and slow-decay low-threshold mechanosensitive. The cultured neurons from TRPV2-deficient mice lacked stretch-evoked Ca responses by fast-decay neurons normally activated by high-threshold mechanical stimulation. These results demonstrated that TRPV2 has a critical role in mechanical nociception in the adult somatosensory system.
机械转导在许多感觉过程中发挥着重要作用,包括触觉、疼痛、听觉和本体感觉。然而,机械伤害感受的分子机制仍不清楚。在这里,我们表明,TRPV2 在小鼠中的消除导致机械伤害感受的缺陷,这是由于成年初级感觉神经元 (PSN) 亚类中缺乏机械敏感性。PSN 特异性 TRPV2 缺陷型小鼠在尾部压力和 von Frey 毛发测试中表现出机械伤害感受行为障碍,而在轴突生长和神经元组成方面没有缺陷。相反,这些小鼠对有害热和非有害触觉刺激表现出正常的行为。此外,基于培养的 PSN 的拉伸诱发 Ca 反应,我们在正常小鼠中表征了两种类型的拉伸激活神经元;快速衰减的高阈值和缓慢衰减的低阈值机械敏感神经元。正常情况下由高阈值机械刺激激活的快速衰减神经元缺乏 TRPV2 缺陷型小鼠培养神经元的拉伸诱发 Ca 反应。这些结果表明 TRPV2 在成年躯体感觉系统的机械伤害感受中具有关键作用。