Ageing-associated changes in DNA methylation in X and Y chromosomes

Abstract Background Ageing displays clear sexual dimorphism, evident in both morbidity and mortality. Ageing is also associated with changes in DNA methylation, but very little focus has been on the sex chromosomes, potential biological contributors to the observed sexual dimorphism. Here, we sought...

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Main Authors: Laura Kananen, Saara Marttila
Format: Article
Language:English
Published: BMC 2021-07-01
Series:Epigenetics & Chromatin
Subjects:
Online Access:https://doi.org/10.1186/s13072-021-00407-6
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author Laura Kananen
Saara Marttila
author_facet Laura Kananen
Saara Marttila
author_sort Laura Kananen
collection DOAJ
description Abstract Background Ageing displays clear sexual dimorphism, evident in both morbidity and mortality. Ageing is also associated with changes in DNA methylation, but very little focus has been on the sex chromosomes, potential biological contributors to the observed sexual dimorphism. Here, we sought to identify DNA methylation changes associated with ageing in the Y and X chromosomes, by utilizing datasets available in data repositories, comprising in total of 1240 males and 1191 females, aged 14–92 years. Results In total, we identified 46 age-associated CpG sites in the male Y, 1327 age-associated CpG sites in the male X, and 325 age-associated CpG sites in the female X. The X chromosomal age-associated CpGs showed significant overlap between females and males, with 122 CpGs identified as age-associated in both sexes. Age-associated X chromosomal CpGs in both sexes were enriched in CpG islands and depleted from gene bodies and showed no strong trend towards hypermethylation nor hypomethylation. In contrast, the Y chromosomal age-associated CpGs were enriched in gene bodies, and showed a clear trend towards hypermethylation with age. Conclusions Significant overlap in X chromosomal age-associated CpGs identified in males and females and their shared features suggest that despite the uneven chromosomal dosage, differences in ageing-associated DNA methylation changes in the X chromosome are unlikely to be a major contributor of sex dimorphism in ageing. While age-associated CpGs showed good replication across datasets in the present study, only a limited set of previously reported age-associated CpGs were replicated. One contributor to the limited overlap are differences in the age range of individuals included in each data set. Further study is needed to identify biologically significant age-associated CpGs in the sex chromosomes.
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spelling doaj.art-5bdabe13e89d403f9cdcdc578567a96a2022-12-21T19:59:26ZengBMCEpigenetics & Chromatin1756-89352021-07-0114111010.1186/s13072-021-00407-6Ageing-associated changes in DNA methylation in X and Y chromosomesLaura Kananen0Saara Marttila1Faculty of Social Sciences (Health Sciences), Tampere UniversityGerontology Research Center, Tampere UniversityAbstract Background Ageing displays clear sexual dimorphism, evident in both morbidity and mortality. Ageing is also associated with changes in DNA methylation, but very little focus has been on the sex chromosomes, potential biological contributors to the observed sexual dimorphism. Here, we sought to identify DNA methylation changes associated with ageing in the Y and X chromosomes, by utilizing datasets available in data repositories, comprising in total of 1240 males and 1191 females, aged 14–92 years. Results In total, we identified 46 age-associated CpG sites in the male Y, 1327 age-associated CpG sites in the male X, and 325 age-associated CpG sites in the female X. The X chromosomal age-associated CpGs showed significant overlap between females and males, with 122 CpGs identified as age-associated in both sexes. Age-associated X chromosomal CpGs in both sexes were enriched in CpG islands and depleted from gene bodies and showed no strong trend towards hypermethylation nor hypomethylation. In contrast, the Y chromosomal age-associated CpGs were enriched in gene bodies, and showed a clear trend towards hypermethylation with age. Conclusions Significant overlap in X chromosomal age-associated CpGs identified in males and females and their shared features suggest that despite the uneven chromosomal dosage, differences in ageing-associated DNA methylation changes in the X chromosome are unlikely to be a major contributor of sex dimorphism in ageing. While age-associated CpGs showed good replication across datasets in the present study, only a limited set of previously reported age-associated CpGs were replicated. One contributor to the limited overlap are differences in the age range of individuals included in each data set. Further study is needed to identify biologically significant age-associated CpGs in the sex chromosomes.https://doi.org/10.1186/s13072-021-00407-6AgeingDNA methylationSex chromosomesX chromosomeY chromosome
spellingShingle Laura Kananen
Saara Marttila
Ageing-associated changes in DNA methylation in X and Y chromosomes
Epigenetics & Chromatin
Ageing
DNA methylation
Sex chromosomes
X chromosome
Y chromosome
title Ageing-associated changes in DNA methylation in X and Y chromosomes
title_full Ageing-associated changes in DNA methylation in X and Y chromosomes
title_fullStr Ageing-associated changes in DNA methylation in X and Y chromosomes
title_full_unstemmed Ageing-associated changes in DNA methylation in X and Y chromosomes
title_short Ageing-associated changes in DNA methylation in X and Y chromosomes
title_sort ageing associated changes in dna methylation in x and y chromosomes
topic Ageing
DNA methylation
Sex chromosomes
X chromosome
Y chromosome
url https://doi.org/10.1186/s13072-021-00407-6
work_keys_str_mv AT laurakananen ageingassociatedchangesindnamethylationinxandychromosomes
AT saaramarttila ageingassociatedchangesindnamethylationinxandychromosomes