Literature DB >> 12971899

In vivo imaging of C. elegans mechanosensory neurons demonstrates a specific role for the MEC-4 channel in the process of gentle touch sensation.

Hiroshi Suzuki1, Rex Kerr, Laura Bianchi, Christian Frøkjaer-Jensen, Dan Slone, Jian Xue, Beate Gerstbrein, Monica Driscoll, William R Schafer.   

Abstract

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.

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Year:  2003        PMID: 12971899     DOI: 10.1016/j.neuron.2003.08.015

Source DB:  PubMed          Journal:  Neuron        ISSN: 0896-6273            Impact factor:   17.173


  108 in total

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8.  Chemosensory signal transduction in Caenorhabditis elegans.

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9.  Modulation of C. elegans touch sensitivity is integrated at multiple levels.

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10.  Using a Microfluidics Device for Mechanical Stimulation and High Resolution Imaging of C. elegans.

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