Impaired genome maintenance suppresses the growth hormone--insulin-like growth factor 1 axis in mice with Cockayne syndrome.

Cockayne syndrome (CS) is a photosensitive, DNA repair disorder associated with progeria that is caused by a defect in the transcription-coupled repair subpathway of nucleotide excision repair (NER). Here, complete inactivation of NER in Csb(m/m)/Xpa(-/-) mutants causes a phenotype that reliably mim...

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Main Authors: Ingrid van der Pluijm, George A Garinis, Renata M C Brandt, Theo G M F Gorgels, Susan W Wijnhoven, Karin E M Diderich, Jan de Wit, James R Mitchell, Conny van Oostrom, Rudolf Beems, Laura J Niedernhofer, Susana Velasco, Errol C Friedberg, Kiyoji Tanaka, Harry van Steeg, Jan H J Hoeijmakers, Gijsbertus T J van der Horst
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2007-01-01
Series:PLoS Biology
Online Access:http://europepmc.org/articles/PMC1698505?pdf=render
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spelling doaj-e01574a8f78b49088291bb604cfb7cb52021-07-02T11:33:13ZengPublic Library of Science (PLoS)PLoS Biology1544-91731545-78852007-01-0151e210.1371/journal.pbio.0050002Impaired genome maintenance suppresses the growth hormone--insulin-like growth factor 1 axis in mice with Cockayne syndrome.Ingrid van der PluijmGeorge A GarinisRenata M C BrandtTheo G M F GorgelsSusan W WijnhovenKarin E M DiderichJan de WitJames R MitchellConny van OostromRudolf BeemsLaura J NiedernhoferSusana VelascoErrol C FriedbergKiyoji TanakaHarry van SteegJan H J HoeijmakersGijsbertus T J van der HorstCockayne syndrome (CS) is a photosensitive, DNA repair disorder associated with progeria that is caused by a defect in the transcription-coupled repair subpathway of nucleotide excision repair (NER). Here, complete inactivation of NER in Csb(m/m)/Xpa(-/-) mutants causes a phenotype that reliably mimics the human progeroid CS syndrome. Newborn Csb(m/m)/Xpa(-/-) mice display attenuated growth, progressive neurological dysfunction, retinal degeneration, cachexia, kyphosis, and die before weaning. Mouse liver transcriptome analysis and several physiological endpoints revealed systemic suppression of the growth hormone/insulin-like growth factor 1 (GH/IGF1) somatotroph axis and oxidative metabolism, increased antioxidant responses, and hypoglycemia together with hepatic glycogen and fat accumulation. Broad genome-wide parallels between Csb(m/m)/Xpa(-/-) and naturally aged mouse liver transcriptomes suggested that these changes are intrinsic to natural ageing and the DNA repair-deficient mice. Importantly, wild-type mice exposed to a low dose of chronic genotoxic stress recapitulated this response, thereby pointing to a novel link between genome instability and the age-related decline of the somatotroph axis.http://europepmc.org/articles/PMC1698505?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Ingrid van der Pluijm
George A Garinis
Renata M C Brandt
Theo G M F Gorgels
Susan W Wijnhoven
Karin E M Diderich
Jan de Wit
James R Mitchell
Conny van Oostrom
Rudolf Beems
Laura J Niedernhofer
Susana Velasco
Errol C Friedberg
Kiyoji Tanaka
Harry van Steeg
Jan H J Hoeijmakers
Gijsbertus T J van der Horst
spellingShingle Ingrid van der Pluijm
George A Garinis
Renata M C Brandt
Theo G M F Gorgels
Susan W Wijnhoven
Karin E M Diderich
Jan de Wit
James R Mitchell
Conny van Oostrom
Rudolf Beems
Laura J Niedernhofer
Susana Velasco
Errol C Friedberg
Kiyoji Tanaka
Harry van Steeg
Jan H J Hoeijmakers
Gijsbertus T J van der Horst
Impaired genome maintenance suppresses the growth hormone--insulin-like growth factor 1 axis in mice with Cockayne syndrome.
PLoS Biology
author_facet Ingrid van der Pluijm
George A Garinis
Renata M C Brandt
Theo G M F Gorgels
Susan W Wijnhoven
Karin E M Diderich
Jan de Wit
James R Mitchell
Conny van Oostrom
Rudolf Beems
Laura J Niedernhofer
Susana Velasco
Errol C Friedberg
Kiyoji Tanaka
Harry van Steeg
Jan H J Hoeijmakers
Gijsbertus T J van der Horst
author_sort Ingrid van der Pluijm
title Impaired genome maintenance suppresses the growth hormone--insulin-like growth factor 1 axis in mice with Cockayne syndrome.
title_short Impaired genome maintenance suppresses the growth hormone--insulin-like growth factor 1 axis in mice with Cockayne syndrome.
title_full Impaired genome maintenance suppresses the growth hormone--insulin-like growth factor 1 axis in mice with Cockayne syndrome.
title_fullStr Impaired genome maintenance suppresses the growth hormone--insulin-like growth factor 1 axis in mice with Cockayne syndrome.
title_full_unstemmed Impaired genome maintenance suppresses the growth hormone--insulin-like growth factor 1 axis in mice with Cockayne syndrome.
title_sort impaired genome maintenance suppresses the growth hormone--insulin-like growth factor 1 axis in mice with cockayne syndrome.
publisher Public Library of Science (PLoS)
series PLoS Biology
issn 1544-9173
1545-7885
publishDate 2007-01-01
description Cockayne syndrome (CS) is a photosensitive, DNA repair disorder associated with progeria that is caused by a defect in the transcription-coupled repair subpathway of nucleotide excision repair (NER). Here, complete inactivation of NER in Csb(m/m)/Xpa(-/-) mutants causes a phenotype that reliably mimics the human progeroid CS syndrome. Newborn Csb(m/m)/Xpa(-/-) mice display attenuated growth, progressive neurological dysfunction, retinal degeneration, cachexia, kyphosis, and die before weaning. Mouse liver transcriptome analysis and several physiological endpoints revealed systemic suppression of the growth hormone/insulin-like growth factor 1 (GH/IGF1) somatotroph axis and oxidative metabolism, increased antioxidant responses, and hypoglycemia together with hepatic glycogen and fat accumulation. Broad genome-wide parallels between Csb(m/m)/Xpa(-/-) and naturally aged mouse liver transcriptomes suggested that these changes are intrinsic to natural ageing and the DNA repair-deficient mice. Importantly, wild-type mice exposed to a low dose of chronic genotoxic stress recapitulated this response, thereby pointing to a novel link between genome instability and the age-related decline of the somatotroph axis.
url http://europepmc.org/articles/PMC1698505?pdf=render
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