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Differential Methylation of Telomere-Related Genes Is Associated with Kidney Disease in Individuals with Type 1 Diabetes

Diabetic kidney disease (DKD) represents a major global health problem. Accelerated ageing is a key feature of DKD and, therefore, characteristics of accelerated ageing may provide useful biomarkers or therapeutic targets. Harnessing multi-omics, features affecting telomere biology and any associate...

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Autores principales: Hill, Claire, Duffy, Seamus, Kettyle, Laura M., McGlynn, Liane, Sandholm, Niina, Salem, Rany M., Thompson, Alex, Swan, Elizabeth J., Kilner, Jill, Rossing, Peter, Shiels, Paul G., Lajer, Maria, Groop, Per-Henrik, Maxwell, Alexander Peter, McKnight, Amy Jayne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10217816/
https://www.ncbi.nlm.nih.gov/pubmed/37239390
http://dx.doi.org/10.3390/genes14051029
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author Hill, Claire
Duffy, Seamus
Kettyle, Laura M.
McGlynn, Liane
Sandholm, Niina
Salem, Rany M.
Thompson, Alex
Swan, Elizabeth J.
Kilner, Jill
Rossing, Peter
Shiels, Paul G.
Lajer, Maria
Groop, Per-Henrik
Maxwell, Alexander Peter
McKnight, Amy Jayne
author_facet Hill, Claire
Duffy, Seamus
Kettyle, Laura M.
McGlynn, Liane
Sandholm, Niina
Salem, Rany M.
Thompson, Alex
Swan, Elizabeth J.
Kilner, Jill
Rossing, Peter
Shiels, Paul G.
Lajer, Maria
Groop, Per-Henrik
Maxwell, Alexander Peter
McKnight, Amy Jayne
author_sort Hill, Claire
collection PubMed
description Diabetic kidney disease (DKD) represents a major global health problem. Accelerated ageing is a key feature of DKD and, therefore, characteristics of accelerated ageing may provide useful biomarkers or therapeutic targets. Harnessing multi-omics, features affecting telomere biology and any associated methylome dysregulation in DKD were explored. Genotype data for nuclear genome polymorphisms in telomere-related genes were extracted from genome-wide case–control association data (n = 823 DKD/903 controls; n = 247 end-stage kidney disease (ESKD)/1479 controls). Telomere length was established using quantitative polymerase chain reaction. Quantitative methylation values for 1091 CpG sites in telomere-related genes were extracted from epigenome-wide case–control association data (n = 150 DKD/100 controls). Telomere length was significantly shorter in older age groups (p = 7.6 × 10(−6)). Telomere length was also significantly reduced (p = 6.6 × 10(−5)) in DKD versus control individuals, with significance remaining after covariate adjustment (p = 0.028). DKD and ESKD were nominally associated with telomere-related genetic variation, with Mendelian randomisation highlighting no significant association between genetically predicted telomere length and kidney disease. A total of 496 CpG sites in 212 genes reached epigenome-wide significance (p ≤ 10(−8)) for DKD association, and 412 CpG sites in 193 genes for ESKD. Functional prediction revealed differentially methylated genes were enriched for Wnt signalling involvement. Harnessing previously published RNA-sequencing datasets, potential targets where epigenetic dysregulation may result in altered gene expression were revealed, useful as potential diagnostic and therapeutic targets for intervention.
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spelling pubmed-102178162023-05-27 Differential Methylation of Telomere-Related Genes Is Associated with Kidney Disease in Individuals with Type 1 Diabetes Hill, Claire Duffy, Seamus Kettyle, Laura M. McGlynn, Liane Sandholm, Niina Salem, Rany M. Thompson, Alex Swan, Elizabeth J. Kilner, Jill Rossing, Peter Shiels, Paul G. Lajer, Maria Groop, Per-Henrik Maxwell, Alexander Peter McKnight, Amy Jayne Genes (Basel) Article Diabetic kidney disease (DKD) represents a major global health problem. Accelerated ageing is a key feature of DKD and, therefore, characteristics of accelerated ageing may provide useful biomarkers or therapeutic targets. Harnessing multi-omics, features affecting telomere biology and any associated methylome dysregulation in DKD were explored. Genotype data for nuclear genome polymorphisms in telomere-related genes were extracted from genome-wide case–control association data (n = 823 DKD/903 controls; n = 247 end-stage kidney disease (ESKD)/1479 controls). Telomere length was established using quantitative polymerase chain reaction. Quantitative methylation values for 1091 CpG sites in telomere-related genes were extracted from epigenome-wide case–control association data (n = 150 DKD/100 controls). Telomere length was significantly shorter in older age groups (p = 7.6 × 10(−6)). Telomere length was also significantly reduced (p = 6.6 × 10(−5)) in DKD versus control individuals, with significance remaining after covariate adjustment (p = 0.028). DKD and ESKD were nominally associated with telomere-related genetic variation, with Mendelian randomisation highlighting no significant association between genetically predicted telomere length and kidney disease. A total of 496 CpG sites in 212 genes reached epigenome-wide significance (p ≤ 10(−8)) for DKD association, and 412 CpG sites in 193 genes for ESKD. Functional prediction revealed differentially methylated genes were enriched for Wnt signalling involvement. Harnessing previously published RNA-sequencing datasets, potential targets where epigenetic dysregulation may result in altered gene expression were revealed, useful as potential diagnostic and therapeutic targets for intervention. MDPI 2023-04-30 /pmc/articles/PMC10217816/ /pubmed/37239390 http://dx.doi.org/10.3390/genes14051029 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hill, Claire
Duffy, Seamus
Kettyle, Laura M.
McGlynn, Liane
Sandholm, Niina
Salem, Rany M.
Thompson, Alex
Swan, Elizabeth J.
Kilner, Jill
Rossing, Peter
Shiels, Paul G.
Lajer, Maria
Groop, Per-Henrik
Maxwell, Alexander Peter
McKnight, Amy Jayne
Differential Methylation of Telomere-Related Genes Is Associated with Kidney Disease in Individuals with Type 1 Diabetes
title Differential Methylation of Telomere-Related Genes Is Associated with Kidney Disease in Individuals with Type 1 Diabetes
title_full Differential Methylation of Telomere-Related Genes Is Associated with Kidney Disease in Individuals with Type 1 Diabetes
title_fullStr Differential Methylation of Telomere-Related Genes Is Associated with Kidney Disease in Individuals with Type 1 Diabetes
title_full_unstemmed Differential Methylation of Telomere-Related Genes Is Associated with Kidney Disease in Individuals with Type 1 Diabetes
title_short Differential Methylation of Telomere-Related Genes Is Associated with Kidney Disease in Individuals with Type 1 Diabetes
title_sort differential methylation of telomere-related genes is associated with kidney disease in individuals with type 1 diabetes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10217816/
https://www.ncbi.nlm.nih.gov/pubmed/37239390
http://dx.doi.org/10.3390/genes14051029
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