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Inhibitory Kcnip2 neurons of the spinal dorsal horn control behavioral sensitivity to environmental cold

Proper sensing of ambient temperature is of utmost importance for the survival of euthermic animals, including humans. While considerable progress has been made in our understanding of temperature sensors and transduction mechanisms, the higher-order neural circuits processing such information are s...

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Autores principales: Albisetti, Gioele W., Ganley, Robert P., Pietrafesa, Francesca, Werynska, Karolina, Magalhaes de Sousa, Marília, Sipione, Rebecca, Scheurer, Louis, Bösl, Michael R., Pelczar, Pawel, Wildner, Hendrik, Zeilhofer, Hanns Ulrich
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9831669/
https://www.ncbi.nlm.nih.gov/pubmed/36323322
http://dx.doi.org/10.1016/j.neuron.2022.10.008
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author Albisetti, Gioele W.
Ganley, Robert P.
Pietrafesa, Francesca
Werynska, Karolina
Magalhaes de Sousa, Marília
Sipione, Rebecca
Scheurer, Louis
Bösl, Michael R.
Pelczar, Pawel
Wildner, Hendrik
Zeilhofer, Hanns Ulrich
author_facet Albisetti, Gioele W.
Ganley, Robert P.
Pietrafesa, Francesca
Werynska, Karolina
Magalhaes de Sousa, Marília
Sipione, Rebecca
Scheurer, Louis
Bösl, Michael R.
Pelczar, Pawel
Wildner, Hendrik
Zeilhofer, Hanns Ulrich
author_sort Albisetti, Gioele W.
collection PubMed
description Proper sensing of ambient temperature is of utmost importance for the survival of euthermic animals, including humans. While considerable progress has been made in our understanding of temperature sensors and transduction mechanisms, the higher-order neural circuits processing such information are still only incompletely understood. Using intersectional genetics in combination with circuit tracing and functional neuron manipulation, we identified Kcnip2-expressing inhibitory (Kcnip2(GlyT2)) interneurons of the mouse spinal dorsal horn as critical elements of a neural circuit that tunes sensitivity to cold. Diphtheria toxin-mediated ablation of these neurons increased cold sensitivity without affecting responses to other somatosensory modalities, while their chemogenetic activation reduced cold and also heat sensitivity. We also show that Kcnip2(GlyT2) neurons become activated preferentially upon exposure to cold temperatures and subsequently inhibit spinal nociceptive output neurons that project to the lateral parabrachial nucleus. Our results thus identify a hitherto unknown spinal circuit that tunes cold sensitivity.
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spelling pubmed-98316692023-01-11 Inhibitory Kcnip2 neurons of the spinal dorsal horn control behavioral sensitivity to environmental cold Albisetti, Gioele W. Ganley, Robert P. Pietrafesa, Francesca Werynska, Karolina Magalhaes de Sousa, Marília Sipione, Rebecca Scheurer, Louis Bösl, Michael R. Pelczar, Pawel Wildner, Hendrik Zeilhofer, Hanns Ulrich Neuron Article Proper sensing of ambient temperature is of utmost importance for the survival of euthermic animals, including humans. While considerable progress has been made in our understanding of temperature sensors and transduction mechanisms, the higher-order neural circuits processing such information are still only incompletely understood. Using intersectional genetics in combination with circuit tracing and functional neuron manipulation, we identified Kcnip2-expressing inhibitory (Kcnip2(GlyT2)) interneurons of the mouse spinal dorsal horn as critical elements of a neural circuit that tunes sensitivity to cold. Diphtheria toxin-mediated ablation of these neurons increased cold sensitivity without affecting responses to other somatosensory modalities, while their chemogenetic activation reduced cold and also heat sensitivity. We also show that Kcnip2(GlyT2) neurons become activated preferentially upon exposure to cold temperatures and subsequently inhibit spinal nociceptive output neurons that project to the lateral parabrachial nucleus. Our results thus identify a hitherto unknown spinal circuit that tunes cold sensitivity. Cell Press 2023-01-04 /pmc/articles/PMC9831669/ /pubmed/36323322 http://dx.doi.org/10.1016/j.neuron.2022.10.008 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Albisetti, Gioele W.
Ganley, Robert P.
Pietrafesa, Francesca
Werynska, Karolina
Magalhaes de Sousa, Marília
Sipione, Rebecca
Scheurer, Louis
Bösl, Michael R.
Pelczar, Pawel
Wildner, Hendrik
Zeilhofer, Hanns Ulrich
Inhibitory Kcnip2 neurons of the spinal dorsal horn control behavioral sensitivity to environmental cold
title Inhibitory Kcnip2 neurons of the spinal dorsal horn control behavioral sensitivity to environmental cold
title_full Inhibitory Kcnip2 neurons of the spinal dorsal horn control behavioral sensitivity to environmental cold
title_fullStr Inhibitory Kcnip2 neurons of the spinal dorsal horn control behavioral sensitivity to environmental cold
title_full_unstemmed Inhibitory Kcnip2 neurons of the spinal dorsal horn control behavioral sensitivity to environmental cold
title_short Inhibitory Kcnip2 neurons of the spinal dorsal horn control behavioral sensitivity to environmental cold
title_sort inhibitory kcnip2 neurons of the spinal dorsal horn control behavioral sensitivity to environmental cold
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9831669/
https://www.ncbi.nlm.nih.gov/pubmed/36323322
http://dx.doi.org/10.1016/j.neuron.2022.10.008
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