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Diet restriction delays accelerated aging and genomic stress in DNA repair deficient mice

DNA repair-deficient Ercc1(Δ/−) mice show numerous accelerated aging features limiting lifespan to 4–6 month(1–4). Simultaneously they exhibit a ‘survival response’, which suppresses growth and enhances maintenance, resembling the anti-aging response induced by dietary restriction (DR)(1,5). Here we...

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Autores principales: Vermeij, W.P., Dollé, M.E.T., Reiling, E., Jaarsma, D., Payan-Gomez, C., Bombardieri, C.R., Wu, H., Roks, A.J.M., Botter, S.M., van der Eerden, B.C., Youssef, S.A., Kuiper, R.V., Nagarajah, B., van Oostrom, C.T., Brandt, R.M.C., Barnhoorn, S., Imholz, S., Pennings, J.L.A., de Bruin, A., Gyenis, Á., Pothof, J., Vijg, J., van Steeg, H., Hoeijmakers, J.H.J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5161687/
https://www.ncbi.nlm.nih.gov/pubmed/27556946
http://dx.doi.org/10.1038/nature19329
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author Vermeij, W.P.
Dollé, M.E.T.
Reiling, E.
Jaarsma, D.
Payan-Gomez, C.
Bombardieri, C.R.
Wu, H.
Roks, A.J.M.
Botter, S.M.
van der Eerden, B.C.
Youssef, S.A.
Kuiper, R.V.
Nagarajah, B.
van Oostrom, C.T.
Brandt, R.M.C.
Barnhoorn, S.
Imholz, S.
Pennings, J.L.A.
de Bruin, A.
Gyenis, Á.
Pothof, J.
Vijg, J.
van Steeg, H.
Hoeijmakers, J.H.J.
author_facet Vermeij, W.P.
Dollé, M.E.T.
Reiling, E.
Jaarsma, D.
Payan-Gomez, C.
Bombardieri, C.R.
Wu, H.
Roks, A.J.M.
Botter, S.M.
van der Eerden, B.C.
Youssef, S.A.
Kuiper, R.V.
Nagarajah, B.
van Oostrom, C.T.
Brandt, R.M.C.
Barnhoorn, S.
Imholz, S.
Pennings, J.L.A.
de Bruin, A.
Gyenis, Á.
Pothof, J.
Vijg, J.
van Steeg, H.
Hoeijmakers, J.H.J.
author_sort Vermeij, W.P.
collection PubMed
description DNA repair-deficient Ercc1(Δ/−) mice show numerous accelerated aging features limiting lifespan to 4–6 month(1–4). Simultaneously they exhibit a ‘survival response’, which suppresses growth and enhances maintenance, resembling the anti-aging response induced by dietary restriction (DR)(1,5). Here we report that subjecting these progeroid, dwarf mutants to 30% DR tripled median and maximal remaining lifespan, and drastically retarded numerous aspects of accelerated aging, e.g. DR animals retained 50% more neurons and maintained full motoric function, even far beyond the lifespan of ad libitum (AL) animals. Repair-deficient, progeroid Xpg(−/−) mice, a Cockayne syndrome model(6), responded similarly, extending this observation to other repair mutants. The DR response in Ercc1(Δ/−) mice closely resembled DR in wild type animals. Interestingly, AL Ercc1(Δ/−) liver showed preferential extinction of expression of long genes, a phenomenon we also observe in several normal aging tissues. This is consistent with accumulation of stochastic, transcription-blocking lesions, affecting long genes more than short ones. DR largely prevented declining transcriptional output and reduced γH2AX DNA damage foci, indicating that DR preserves genome function by alleviating DNA damage. Our findings establish Ercc1(Δ/−) mice as powerful model for interventions sustaining health, reveal untapped potential for reducing endogenous damage, provide new venues for understanding the molecular mechanism of DR, and suggest a counterintuitive DR-like therapy for human progeroid genome instability syndromes and possibly neurodegeneration in general.
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spelling pubmed-51616872017-02-24 Diet restriction delays accelerated aging and genomic stress in DNA repair deficient mice Vermeij, W.P. Dollé, M.E.T. Reiling, E. Jaarsma, D. Payan-Gomez, C. Bombardieri, C.R. Wu, H. Roks, A.J.M. Botter, S.M. van der Eerden, B.C. Youssef, S.A. Kuiper, R.V. Nagarajah, B. van Oostrom, C.T. Brandt, R.M.C. Barnhoorn, S. Imholz, S. Pennings, J.L.A. de Bruin, A. Gyenis, Á. Pothof, J. Vijg, J. van Steeg, H. Hoeijmakers, J.H.J. Nature Article DNA repair-deficient Ercc1(Δ/−) mice show numerous accelerated aging features limiting lifespan to 4–6 month(1–4). Simultaneously they exhibit a ‘survival response’, which suppresses growth and enhances maintenance, resembling the anti-aging response induced by dietary restriction (DR)(1,5). Here we report that subjecting these progeroid, dwarf mutants to 30% DR tripled median and maximal remaining lifespan, and drastically retarded numerous aspects of accelerated aging, e.g. DR animals retained 50% more neurons and maintained full motoric function, even far beyond the lifespan of ad libitum (AL) animals. Repair-deficient, progeroid Xpg(−/−) mice, a Cockayne syndrome model(6), responded similarly, extending this observation to other repair mutants. The DR response in Ercc1(Δ/−) mice closely resembled DR in wild type animals. Interestingly, AL Ercc1(Δ/−) liver showed preferential extinction of expression of long genes, a phenomenon we also observe in several normal aging tissues. This is consistent with accumulation of stochastic, transcription-blocking lesions, affecting long genes more than short ones. DR largely prevented declining transcriptional output and reduced γH2AX DNA damage foci, indicating that DR preserves genome function by alleviating DNA damage. Our findings establish Ercc1(Δ/−) mice as powerful model for interventions sustaining health, reveal untapped potential for reducing endogenous damage, provide new venues for understanding the molecular mechanism of DR, and suggest a counterintuitive DR-like therapy for human progeroid genome instability syndromes and possibly neurodegeneration in general. 2016-08-24 2016-09-15 /pmc/articles/PMC5161687/ /pubmed/27556946 http://dx.doi.org/10.1038/nature19329 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms Reprints and permissions information is available at www.nature.com/reprints.
spellingShingle Article
Vermeij, W.P.
Dollé, M.E.T.
Reiling, E.
Jaarsma, D.
Payan-Gomez, C.
Bombardieri, C.R.
Wu, H.
Roks, A.J.M.
Botter, S.M.
van der Eerden, B.C.
Youssef, S.A.
Kuiper, R.V.
Nagarajah, B.
van Oostrom, C.T.
Brandt, R.M.C.
Barnhoorn, S.
Imholz, S.
Pennings, J.L.A.
de Bruin, A.
Gyenis, Á.
Pothof, J.
Vijg, J.
van Steeg, H.
Hoeijmakers, J.H.J.
Diet restriction delays accelerated aging and genomic stress in DNA repair deficient mice
title Diet restriction delays accelerated aging and genomic stress in DNA repair deficient mice
title_full Diet restriction delays accelerated aging and genomic stress in DNA repair deficient mice
title_fullStr Diet restriction delays accelerated aging and genomic stress in DNA repair deficient mice
title_full_unstemmed Diet restriction delays accelerated aging and genomic stress in DNA repair deficient mice
title_short Diet restriction delays accelerated aging and genomic stress in DNA repair deficient mice
title_sort diet restriction delays accelerated aging and genomic stress in dna repair deficient mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5161687/
https://www.ncbi.nlm.nih.gov/pubmed/27556946
http://dx.doi.org/10.1038/nature19329
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