RRC ID |
55867
|
Author |
Chew YL, Tanizawa Y, Cho Y, Zhao B, Yu AJ, Ardiel EL, Rabinowitch I, Bai J, Rankin CH, Lu H, Beets I, Schafer WR.
|
Title |
An Afferent Neuropeptide System Transmits Mechanosensory Signals Triggering Sensitization and Arousal in C. elegans.
|
Journal |
Neuron
|
Abstract |
Sensitization is a simple form of behavioral plasticity by which an initial stimulus, often signaling danger, leads to increased responsiveness to subsequent stimuli. Cross-modal sensitization is an important feature of arousal in many organisms, yet its molecular and neural mechanisms are incompletely understood. Here we show that in C. elegans, aversive mechanical stimuli lead to both enhanced locomotor activity and sensitization of aversive chemosensory pathways. Both locomotor arousal and cross-modal sensitization depend on the release of FLP-20 neuropeptides from primary mechanosensory neurons and on their receptor FRPR-3. Surprisingly, the critical site of action of FRPR-3 for both sensory and locomotor arousal is RID, a single neuroendocrine cell specialized for the release of neuropeptides that responds to mechanical stimuli in a FLP-20-dependent manner. Thus, FLP-20 peptides function as an afferent arousal signal that conveys mechanosensory information to central neurons that modulate arousal and other behavioral states.
|
Volume |
99(6)
|
Pages |
1233-1246.e6
|
Published |
2018-9-19
|
DOI |
10.1016/j.neuron.2018.08.003
|
PII |
S0896-6273(18)30676-7
|
PMID |
30146306
|
PMC |
PMC6162336
|
MeSH |
Animals
Arousal / physiology*
Behavior, Animal / physiology*
Caenorhabditis elegans / metabolism
Caenorhabditis elegans Proteins / metabolism
Central Nervous System / metabolism
Locomotion / physiology*
Neurons / physiology
Neuropeptides / metabolism*
Peptides / metabolism
|
IF |
14.403
|
Times Cited |
6
|
Resource |
C.elegans |
tm1583
tm1504
tm1325
tm1846
tm2913
tm1553
tm1568
tm1498
tm2706 |