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Mechanosensory and ATP Release Deficits following Keratin14-Cre-Mediated TRPA1 Deletion Despite Absence of TRPA1 in Murine Keratinocytes

Keratinocytes are the first cells that come into direct contact with external tactile stimuli; however, their role in touch transduction in vivo is not clear. The ion channel Transient Receptor Potential Ankyrin 1 (TRPA1) is essential for some mechanically-gated currents in sensory neurons, amplifie...

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Autores principales: Zappia, Katherine J., Garrison, Sheldon R., Palygin, Oleg, Weyer, Andy D., Barabas, Marie E., Lawlor, Michael W., Staruschenko, Alexander, Stucky, Cheryl L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4792390/
https://www.ncbi.nlm.nih.gov/pubmed/26978657
http://dx.doi.org/10.1371/journal.pone.0151602
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author Zappia, Katherine J.
Garrison, Sheldon R.
Palygin, Oleg
Weyer, Andy D.
Barabas, Marie E.
Lawlor, Michael W.
Staruschenko, Alexander
Stucky, Cheryl L.
author_facet Zappia, Katherine J.
Garrison, Sheldon R.
Palygin, Oleg
Weyer, Andy D.
Barabas, Marie E.
Lawlor, Michael W.
Staruschenko, Alexander
Stucky, Cheryl L.
author_sort Zappia, Katherine J.
collection PubMed
description Keratinocytes are the first cells that come into direct contact with external tactile stimuli; however, their role in touch transduction in vivo is not clear. The ion channel Transient Receptor Potential Ankyrin 1 (TRPA1) is essential for some mechanically-gated currents in sensory neurons, amplifies mechanical responses after inflammation, and has been reported to be expressed in human and mouse skin. Other reports have not detected Trpa1 mRNA transcripts in human or mouse epidermis. Therefore, we set out to determine whether selective deletion of Trpa1 from keratinocytes would impact mechanosensation. We generated K14Cre-Trpa1(fl/fl) mice lacking TRPA1 in K14-expressing cells, including keratinocytes. Surprisingly, Trpa1 transcripts were very poorly detected in epidermis of these mice or in controls, and detection was minimal enough to preclude observation of Trpa1 mRNA knockdown in the K14Cre-Trpa1(fl/fl) mice. Unexpectedly, these K14Cre-Trpa1(fl/fl) mice nonetheless exhibited a pronounced deficit in mechanosensitivity at the behavioral and primary afferent levels, and decreased mechanically-evoked ATP release from skin. Overall, while these data suggest that the intended targeted deletion of Trpa1 from keratin 14-expressing cells of the epidermis induces functional deficits in mechanotransduction and ATP release, these deficits are in fact likely due to factors other than reduction of Trpa1 expression in adult mouse keratinocytes because they express very little, if any, Trpa1.
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spelling pubmed-47923902016-03-23 Mechanosensory and ATP Release Deficits following Keratin14-Cre-Mediated TRPA1 Deletion Despite Absence of TRPA1 in Murine Keratinocytes Zappia, Katherine J. Garrison, Sheldon R. Palygin, Oleg Weyer, Andy D. Barabas, Marie E. Lawlor, Michael W. Staruschenko, Alexander Stucky, Cheryl L. PLoS One Research Article Keratinocytes are the first cells that come into direct contact with external tactile stimuli; however, their role in touch transduction in vivo is not clear. The ion channel Transient Receptor Potential Ankyrin 1 (TRPA1) is essential for some mechanically-gated currents in sensory neurons, amplifies mechanical responses after inflammation, and has been reported to be expressed in human and mouse skin. Other reports have not detected Trpa1 mRNA transcripts in human or mouse epidermis. Therefore, we set out to determine whether selective deletion of Trpa1 from keratinocytes would impact mechanosensation. We generated K14Cre-Trpa1(fl/fl) mice lacking TRPA1 in K14-expressing cells, including keratinocytes. Surprisingly, Trpa1 transcripts were very poorly detected in epidermis of these mice or in controls, and detection was minimal enough to preclude observation of Trpa1 mRNA knockdown in the K14Cre-Trpa1(fl/fl) mice. Unexpectedly, these K14Cre-Trpa1(fl/fl) mice nonetheless exhibited a pronounced deficit in mechanosensitivity at the behavioral and primary afferent levels, and decreased mechanically-evoked ATP release from skin. Overall, while these data suggest that the intended targeted deletion of Trpa1 from keratin 14-expressing cells of the epidermis induces functional deficits in mechanotransduction and ATP release, these deficits are in fact likely due to factors other than reduction of Trpa1 expression in adult mouse keratinocytes because they express very little, if any, Trpa1. Public Library of Science 2016-03-15 /pmc/articles/PMC4792390/ /pubmed/26978657 http://dx.doi.org/10.1371/journal.pone.0151602 Text en © 2016 Zappia et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Zappia, Katherine J.
Garrison, Sheldon R.
Palygin, Oleg
Weyer, Andy D.
Barabas, Marie E.
Lawlor, Michael W.
Staruschenko, Alexander
Stucky, Cheryl L.
Mechanosensory and ATP Release Deficits following Keratin14-Cre-Mediated TRPA1 Deletion Despite Absence of TRPA1 in Murine Keratinocytes
title Mechanosensory and ATP Release Deficits following Keratin14-Cre-Mediated TRPA1 Deletion Despite Absence of TRPA1 in Murine Keratinocytes
title_full Mechanosensory and ATP Release Deficits following Keratin14-Cre-Mediated TRPA1 Deletion Despite Absence of TRPA1 in Murine Keratinocytes
title_fullStr Mechanosensory and ATP Release Deficits following Keratin14-Cre-Mediated TRPA1 Deletion Despite Absence of TRPA1 in Murine Keratinocytes
title_full_unstemmed Mechanosensory and ATP Release Deficits following Keratin14-Cre-Mediated TRPA1 Deletion Despite Absence of TRPA1 in Murine Keratinocytes
title_short Mechanosensory and ATP Release Deficits following Keratin14-Cre-Mediated TRPA1 Deletion Despite Absence of TRPA1 in Murine Keratinocytes
title_sort mechanosensory and atp release deficits following keratin14-cre-mediated trpa1 deletion despite absence of trpa1 in murine keratinocytes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4792390/
https://www.ncbi.nlm.nih.gov/pubmed/26978657
http://dx.doi.org/10.1371/journal.pone.0151602
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