Suzuki Hiroshi, Kerr Rex, Bianchi Laura, Frøkjaer-Jensen Christian, Slone Dan, Xue Jian, Gerstbrein Beate, Driscoll Monica, Schafer William R
Division of Biology, University of California, San Diego, La Jolla, CA 92093, USA.
Neuron. 2003 Sep 11;39(6):1005-17. doi: 10.1016/j.neuron.2003.08.015.
In the nematode C. elegans, genes encoding components of a putative mechanotransducing channel complex have been identified in screens for light-touch-insensitive mutants. A long-standing question, however, is whether identified MEC proteins act directly in touch transduction or contribute indirectly by maintaining basic mechanoreceptor neuron physiology. In this study, we used the genetically encoded calcium indicator cameleon to record cellular responses of mechanosensory neurons to touch stimuli in intact, behaving nematodes. We defined a gentle touch sensory modality that adapts with a time course of approximately 500 ms and primarily senses motion rather than pressure. The DEG/ENaC channel subunit MEC-4 and channel-associated stomatin MEC-2 are specifically required for neural responses to gentle mechanical stimulation, but do not affect the basic physiology of touch neurons or their in vivo responses to harsh mechanical stimulation. These results distinguish a specific role for the MEC channel proteins in the process of gentle touch mechanosensation.
在线虫秀丽隐杆线虫中,在对光触觉不敏感突变体的筛选中已鉴定出编码假定机械转导通道复合体组分的基因。然而,一个长期存在的问题是,已鉴定出的MEC蛋白是直接作用于触觉转导,还是通过维持基本的机械感受器神经元生理学间接发挥作用。在本研究中,我们使用基因编码的钙指示剂cameleon来记录完整的、有行为的线虫中机械感觉神经元对触觉刺激的细胞反应。我们定义了一种轻柔触觉感觉模式,其适应时间约为500毫秒,主要感知运动而非压力。DEG/ENaC通道亚基MEC-4和通道相关的血影蛋白MEC-2是神经对轻柔机械刺激反应所特需的,但不影响触觉神经元的基本生理学或它们在体内对强烈机械刺激的反应。这些结果区分了MEC通道蛋白在轻柔触觉机械感觉过程中的特定作用。