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SNEV(P) (rp19/) (PSO) (4) deficiency increases PUVA‐induced senescence in mouse skin

Senescent cells accumulate during ageing in various tissues and contribute to organismal ageing. However, factors that are involved in the induction of senescence in vivo are still not well understood. SNEV(P) (rp19/) (PSO) (4) is a multifaceted protein, known to be involved in DNA damage repair and...

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Autores principales: Monteforte, Rossella, Beilhack, Georg F., Grausenburger, Reinhard, Mayerhofer, Benjamin, Bittner, Reginald, Grillari‐Voglauer, Regina, Sibilia, Maria, Dellago, Hanna, Tschachler, Erwin, Gruber, Florian, Grillari, Johannes
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4832318/
https://www.ncbi.nlm.nih.gov/pubmed/26663487
http://dx.doi.org/10.1111/exd.12910
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author Monteforte, Rossella
Beilhack, Georg F.
Grausenburger, Reinhard
Mayerhofer, Benjamin
Bittner, Reginald
Grillari‐Voglauer, Regina
Sibilia, Maria
Dellago, Hanna
Tschachler, Erwin
Gruber, Florian
Grillari, Johannes
author_facet Monteforte, Rossella
Beilhack, Georg F.
Grausenburger, Reinhard
Mayerhofer, Benjamin
Bittner, Reginald
Grillari‐Voglauer, Regina
Sibilia, Maria
Dellago, Hanna
Tschachler, Erwin
Gruber, Florian
Grillari, Johannes
author_sort Monteforte, Rossella
collection PubMed
description Senescent cells accumulate during ageing in various tissues and contribute to organismal ageing. However, factors that are involved in the induction of senescence in vivo are still not well understood. SNEV(P) (rp19/) (PSO) (4) is a multifaceted protein, known to be involved in DNA damage repair and senescence, albeit only in vitro. In this study, we used heterozygous SNEV (+/−) mice (SNEV‐knockout results in early embryonic lethality) and wild‐type littermate controls as a model to elucidate the role of SNEV(P) (rp19/) (PSO) (4) in DNA damage repair and senescence in vivo. We performed PUVA treatment as model system for potently inducing cellular senescence, consisting of 8‐methoxypsoralen in combination with UVA on mouse skin to induce DNA damage and premature skin ageing. We show that SNEV(P) (rp19/) (PSO) (4) expression decreases during organismal ageing, while p16, a marker of ageing in vivo, increases. In response to PUVA treatment, we observed in the skin of both SNEV(P) (rp19/) (PSO) (4) and wild‐type mice an increase in γ‐H2AX levels, a DNA damage marker. In old SNEV(P) (rp19/) (PSO) (4) mice, this increase is accompanied by reduced epidermis thickening and increase in p16 and collagenase levels. Thus, the DNA damage response occurring in the mouse skin upon PUVA treatment is dependent on SNEV(P) (rp19/) (PSO) (4) expression and lower levels of SNEV(P) (rp19/) (PSO) (4), as in old SNEV (+/−) mice, result in increase in cellular senescence and acceleration of premature skin ageing.
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spelling pubmed-48323182016-04-20 SNEV(P) (rp19/) (PSO) (4) deficiency increases PUVA‐induced senescence in mouse skin Monteforte, Rossella Beilhack, Georg F. Grausenburger, Reinhard Mayerhofer, Benjamin Bittner, Reginald Grillari‐Voglauer, Regina Sibilia, Maria Dellago, Hanna Tschachler, Erwin Gruber, Florian Grillari, Johannes Exp Dermatol Original Articles Senescent cells accumulate during ageing in various tissues and contribute to organismal ageing. However, factors that are involved in the induction of senescence in vivo are still not well understood. SNEV(P) (rp19/) (PSO) (4) is a multifaceted protein, known to be involved in DNA damage repair and senescence, albeit only in vitro. In this study, we used heterozygous SNEV (+/−) mice (SNEV‐knockout results in early embryonic lethality) and wild‐type littermate controls as a model to elucidate the role of SNEV(P) (rp19/) (PSO) (4) in DNA damage repair and senescence in vivo. We performed PUVA treatment as model system for potently inducing cellular senescence, consisting of 8‐methoxypsoralen in combination with UVA on mouse skin to induce DNA damage and premature skin ageing. We show that SNEV(P) (rp19/) (PSO) (4) expression decreases during organismal ageing, while p16, a marker of ageing in vivo, increases. In response to PUVA treatment, we observed in the skin of both SNEV(P) (rp19/) (PSO) (4) and wild‐type mice an increase in γ‐H2AX levels, a DNA damage marker. In old SNEV(P) (rp19/) (PSO) (4) mice, this increase is accompanied by reduced epidermis thickening and increase in p16 and collagenase levels. Thus, the DNA damage response occurring in the mouse skin upon PUVA treatment is dependent on SNEV(P) (rp19/) (PSO) (4) expression and lower levels of SNEV(P) (rp19/) (PSO) (4), as in old SNEV (+/−) mice, result in increase in cellular senescence and acceleration of premature skin ageing. John Wiley and Sons Inc. 2016-03-10 2016-03 /pmc/articles/PMC4832318/ /pubmed/26663487 http://dx.doi.org/10.1111/exd.12910 Text en © 2015 The Authors. Experimental Dermatology Published by John Wiley & Sons Ltd. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Monteforte, Rossella
Beilhack, Georg F.
Grausenburger, Reinhard
Mayerhofer, Benjamin
Bittner, Reginald
Grillari‐Voglauer, Regina
Sibilia, Maria
Dellago, Hanna
Tschachler, Erwin
Gruber, Florian
Grillari, Johannes
SNEV(P) (rp19/) (PSO) (4) deficiency increases PUVA‐induced senescence in mouse skin
title SNEV(P) (rp19/) (PSO) (4) deficiency increases PUVA‐induced senescence in mouse skin
title_full SNEV(P) (rp19/) (PSO) (4) deficiency increases PUVA‐induced senescence in mouse skin
title_fullStr SNEV(P) (rp19/) (PSO) (4) deficiency increases PUVA‐induced senescence in mouse skin
title_full_unstemmed SNEV(P) (rp19/) (PSO) (4) deficiency increases PUVA‐induced senescence in mouse skin
title_short SNEV(P) (rp19/) (PSO) (4) deficiency increases PUVA‐induced senescence in mouse skin
title_sort snev(p) (rp19/) (pso) (4) deficiency increases puva‐induced senescence in mouse skin
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4832318/
https://www.ncbi.nlm.nih.gov/pubmed/26663487
http://dx.doi.org/10.1111/exd.12910
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