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Intestinal tuft cells regulate the ATM mediated DNA Damage response via Dclk1 dependent mechanism for crypt restitution following radiation injury

Crypt epithelial survival and regeneration after injury require highly coordinated complex interplay between resident stem cells and diverse cell types. The function of Dclk1 expressing tuft cells regulating intestinal epithelial DNA damage response for cell survival/self-renewal after radiation-ind...

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Autores principales: Chandrakesan, Parthasarathy, May, Randal, Weygant, Nathaniel, Qu, Dongfeng, Berry, William L., Sureban, Sripathi M., Ali, Naushad, Rao, Chinthalapally, Huycke, Mark, Bronze, Michael S., Houchen, Courtney W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5120335/
https://www.ncbi.nlm.nih.gov/pubmed/27876863
http://dx.doi.org/10.1038/srep37667
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author Chandrakesan, Parthasarathy
May, Randal
Weygant, Nathaniel
Qu, Dongfeng
Berry, William L.
Sureban, Sripathi M.
Ali, Naushad
Rao, Chinthalapally
Huycke, Mark
Bronze, Michael S.
Houchen, Courtney W.
author_facet Chandrakesan, Parthasarathy
May, Randal
Weygant, Nathaniel
Qu, Dongfeng
Berry, William L.
Sureban, Sripathi M.
Ali, Naushad
Rao, Chinthalapally
Huycke, Mark
Bronze, Michael S.
Houchen, Courtney W.
author_sort Chandrakesan, Parthasarathy
collection PubMed
description Crypt epithelial survival and regeneration after injury require highly coordinated complex interplay between resident stem cells and diverse cell types. The function of Dclk1 expressing tuft cells regulating intestinal epithelial DNA damage response for cell survival/self-renewal after radiation-induced injury is unclear. Intestinal epithelial cells (IECs) were isolated and purified and utilized for experimental analysis. We found that small intestinal crypts of Villin(Cre);Dclk1(f/f) mice were hypoplastic and more apoptotic 24 h post-total body irradiation, a time when stem cell survival is p53-independent. Injury-induced ATM mediated DNA damage response, pro-survival genes, stem cell markers, and self-renewal ability for survival and restitution were reduced in the isolated intestinal epithelial cells. An even greater reduction in these signaling pathways was observed 3.5 days post-TBI, when peak crypt regeneration occurs. We found that interaction with Dclk1 is critical for ATM and COX2 activation in response to injury. We determined that Dclk1 expressing tuft cells regulate the whole intestinal epithelial cells following injury through paracrine mechanism. These findings suggest that intestinal tuft cells play an important role in regulating the ATM mediated DNA damage response, for epithelial cell survival/self-renewal via a Dclk1 dependent mechanism, and these processes are indispensable for restitution and function after severe radiation-induced injury.
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spelling pubmed-51203352016-11-28 Intestinal tuft cells regulate the ATM mediated DNA Damage response via Dclk1 dependent mechanism for crypt restitution following radiation injury Chandrakesan, Parthasarathy May, Randal Weygant, Nathaniel Qu, Dongfeng Berry, William L. Sureban, Sripathi M. Ali, Naushad Rao, Chinthalapally Huycke, Mark Bronze, Michael S. Houchen, Courtney W. Sci Rep Article Crypt epithelial survival and regeneration after injury require highly coordinated complex interplay between resident stem cells and diverse cell types. The function of Dclk1 expressing tuft cells regulating intestinal epithelial DNA damage response for cell survival/self-renewal after radiation-induced injury is unclear. Intestinal epithelial cells (IECs) were isolated and purified and utilized for experimental analysis. We found that small intestinal crypts of Villin(Cre);Dclk1(f/f) mice were hypoplastic and more apoptotic 24 h post-total body irradiation, a time when stem cell survival is p53-independent. Injury-induced ATM mediated DNA damage response, pro-survival genes, stem cell markers, and self-renewal ability for survival and restitution were reduced in the isolated intestinal epithelial cells. An even greater reduction in these signaling pathways was observed 3.5 days post-TBI, when peak crypt regeneration occurs. We found that interaction with Dclk1 is critical for ATM and COX2 activation in response to injury. We determined that Dclk1 expressing tuft cells regulate the whole intestinal epithelial cells following injury through paracrine mechanism. These findings suggest that intestinal tuft cells play an important role in regulating the ATM mediated DNA damage response, for epithelial cell survival/self-renewal via a Dclk1 dependent mechanism, and these processes are indispensable for restitution and function after severe radiation-induced injury. Nature Publishing Group 2016-11-23 /pmc/articles/PMC5120335/ /pubmed/27876863 http://dx.doi.org/10.1038/srep37667 Text en Copyright © 2016, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Chandrakesan, Parthasarathy
May, Randal
Weygant, Nathaniel
Qu, Dongfeng
Berry, William L.
Sureban, Sripathi M.
Ali, Naushad
Rao, Chinthalapally
Huycke, Mark
Bronze, Michael S.
Houchen, Courtney W.
Intestinal tuft cells regulate the ATM mediated DNA Damage response via Dclk1 dependent mechanism for crypt restitution following radiation injury
title Intestinal tuft cells regulate the ATM mediated DNA Damage response via Dclk1 dependent mechanism for crypt restitution following radiation injury
title_full Intestinal tuft cells regulate the ATM mediated DNA Damage response via Dclk1 dependent mechanism for crypt restitution following radiation injury
title_fullStr Intestinal tuft cells regulate the ATM mediated DNA Damage response via Dclk1 dependent mechanism for crypt restitution following radiation injury
title_full_unstemmed Intestinal tuft cells regulate the ATM mediated DNA Damage response via Dclk1 dependent mechanism for crypt restitution following radiation injury
title_short Intestinal tuft cells regulate the ATM mediated DNA Damage response via Dclk1 dependent mechanism for crypt restitution following radiation injury
title_sort intestinal tuft cells regulate the atm mediated dna damage response via dclk1 dependent mechanism for crypt restitution following radiation injury
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5120335/
https://www.ncbi.nlm.nih.gov/pubmed/27876863
http://dx.doi.org/10.1038/srep37667
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