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Roles of the ClC chloride channel CLH-1 in food-associated salt chemotaxis behavior of C. elegans
by
Iino, Yuichi
, Park, Chanhyun
, Kunitomo, Hirofumi
, Sato, Hirofumi
, Sakurai, Yuki
, Kanda, Shinji
in
adaptive behavior
/ Animals
/ Anion channels
/ Caenorhabditis elegans - genetics
/ Caenorhabditis elegans - physiology
/ Caenorhabditis elegans Proteins - genetics
/ Caenorhabditis elegans Proteins - metabolism
/ Calcium (intracellular)
/ Calcium signalling
/ Chemotaxis
/ Chemotaxis - genetics
/ Chloride
/ chloride channel
/ Chloride Channels - genetics
/ Chloride Channels - metabolism
/ Chlorides
/ Feeding Behavior
/ Food
/ Foraging behavior
/ Genetic screening
/ Genetics and Genomics
/ Homeostasis
/ Information processing
/ Mutation
/ Navigation behavior
/ Nervous system
/ Neurons
/ Neuroscience
/ Salt
/ sensory processing
/ Signal Transduction
/ Sodium Chloride - metabolism
2021
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Roles of the ClC chloride channel CLH-1 in food-associated salt chemotaxis behavior of C. elegans
by
Iino, Yuichi
, Park, Chanhyun
, Kunitomo, Hirofumi
, Sato, Hirofumi
, Sakurai, Yuki
, Kanda, Shinji
in
adaptive behavior
/ Animals
/ Anion channels
/ Caenorhabditis elegans - genetics
/ Caenorhabditis elegans - physiology
/ Caenorhabditis elegans Proteins - genetics
/ Caenorhabditis elegans Proteins - metabolism
/ Calcium (intracellular)
/ Calcium signalling
/ Chemotaxis
/ Chemotaxis - genetics
/ Chloride
/ chloride channel
/ Chloride Channels - genetics
/ Chloride Channels - metabolism
/ Chlorides
/ Feeding Behavior
/ Food
/ Foraging behavior
/ Genetic screening
/ Genetics and Genomics
/ Homeostasis
/ Information processing
/ Mutation
/ Navigation behavior
/ Nervous system
/ Neurons
/ Neuroscience
/ Salt
/ sensory processing
/ Signal Transduction
/ Sodium Chloride - metabolism
2021
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Roles of the ClC chloride channel CLH-1 in food-associated salt chemotaxis behavior of C. elegans
by
Iino, Yuichi
, Park, Chanhyun
, Kunitomo, Hirofumi
, Sato, Hirofumi
, Sakurai, Yuki
, Kanda, Shinji
in
adaptive behavior
/ Animals
/ Anion channels
/ Caenorhabditis elegans - genetics
/ Caenorhabditis elegans - physiology
/ Caenorhabditis elegans Proteins - genetics
/ Caenorhabditis elegans Proteins - metabolism
/ Calcium (intracellular)
/ Calcium signalling
/ Chemotaxis
/ Chemotaxis - genetics
/ Chloride
/ chloride channel
/ Chloride Channels - genetics
/ Chloride Channels - metabolism
/ Chlorides
/ Feeding Behavior
/ Food
/ Foraging behavior
/ Genetic screening
/ Genetics and Genomics
/ Homeostasis
/ Information processing
/ Mutation
/ Navigation behavior
/ Nervous system
/ Neurons
/ Neuroscience
/ Salt
/ sensory processing
/ Signal Transduction
/ Sodium Chloride - metabolism
2021
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Roles of the ClC chloride channel CLH-1 in food-associated salt chemotaxis behavior of C. elegans
Journal Article
Roles of the ClC chloride channel CLH-1 in food-associated salt chemotaxis behavior of C. elegans
2021
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Overview
The ability of animals to process dynamic sensory information facilitates foraging in an ever-changing environment. However, molecular and neural mechanisms underlying such ability remain elusive. The ClC anion channels/transporters play a pivotal role in cellular ion homeostasis across all phyla. Here, we find a ClC chloride channel is involved in salt concentration chemotaxis of Caenorhabditis elegans . Genetic screening identified two altered-function mutations of clh-1 that disrupt experience-dependent salt chemotaxis. Using genetically encoded fluorescent sensors, we demonstrate that CLH-1 contributes to regulation of intracellular anion and calcium dynamics of salt-sensing neuron, ASER. The mutant CLH-1 reduced responsiveness of ASER to salt stimuli in terms of both temporal resolution and intensity, which disrupted navigation strategies for approaching preferred salt concentrations. Furthermore, other ClC genes appeared to act redundantly in salt chemotaxis. These findings provide insights into the regulatory mechanism of neuronal responsivity by ClCs that contribute to modulation of navigation behavior.
Publisher
eLife Sciences Publications Ltd,eLife Sciences Publications, Ltd
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