Abstract
An animal’s skin provides a first point of contact with the sensory environment, including noxious cues that elicit protective behavioral responses. Nociceptive somatosensory neurons densely innervate and intimately interact with epidermal cells to receive these cues, however the mechanisms by which epidermal interactions shape processing of noxious inputs is still poorly understood. Here, we identify a role for dendrite intercalation between epidermal cells in tuning sensitivity of Drosophila larvae to noxious mechanical stimuli. In wild-type larvae, dendrites of nociceptive class IV da neurons intercalate between epidermal cells at apodemes, which function as body wall muscle attachment sites, but not at other sites in the epidermis. From a genetic screen we identified miR-14 as a regulator of dendrite positioning in the epidermis: miR-14 is expressed broadly in the epidermis but not in apodemes, and miR-14 inactivation leads to excessive apical dendrite intercalation between epidermal cells. We found that miR-14 regulates expression and distribution of the epidermal Innexins ogre and Inx2 and that these epidermal gap junction proteins restrict epidermal dendrite intercalation. Finally, we found that altering the extent of epidermal dendrite intercalation had corresponding effects on nociception: increasing epidermal intercalation sensitized larvae to noxious mechanical inputs and increased mechanically evoked calcium responses in nociceptive neurons, whereas reducing epidermal dendrite intercalation had the opposite effects. Altogether, these studies identify epidermal dendrite intercalation as a mechanism for mechanical coupling of nociceptive neurons to the epidermis, with nociceptive sensitivity tuned by the extent of intercalation.
Funder
National Institute of Neurological Disorders and Stroke
National Institute of General Medical Sciences
Weill Neurohub
Scan|Design Foundation by Inger and Jens Bruun
JSPS
UW
UW Dept. of Biology
Publisher
Public Library of Science (PLoS)
Reference108 articles.
1. Institute of Medicine (US) Committee on Advancing Pain Research, Care, and Education. Relieving Pain in America: A Blueprint for Transforming Prevention, Care, Education, and Research [Internet]. Washington (DC): National Academies Press (US); 2011 [cited 2016 Sep 21]. (The National Academies Collection: Reports funded by National Institutes of Health). Available from: http://www.ncbi.nlm.nih.gov/books/NBK91497/
2. Getting in Touch with Mechanical Pain Mechanisms;RZ Hill;Trends Neurosci,2020
3. Individual differences in pain sensitivity: measurement, causation, and consequences;CS Nielsen;J Pain,2009
4. Transparent Touch: Insights From Model Systems on Epidermal Control of Somatosensory Innervation;C Yin;Front Cell Neurosci,2021
5. A conserved morphogenetic mechanism for epidermal ensheathment of nociceptive sensory neurites;N Jiang;Elife,2019