TY - JOUR
T1 - Increasing methylation of sperm rDNA and other repetitive elements in the aging male mammalian germline
AU - Potabattula, Ramya
AU - Zacchini, Federica
AU - Ptak, Grazyna Ewa
AU - Dittrich, Marcus
AU - Müller, Tobias
AU - El Hajj, Nady
AU - Hahn, Thomas
AU - Drummer, Charis
AU - Behr, Rüdiger
AU - Lucas-Hahn, Andrea
AU - Niemann, Heiner
AU - Schorsch, Martin
AU - Haaf, Thomas
N1 - Publisher Copyright:
© 2020 The Authors. Aging Cell published by Anatomical Society and John Wiley & Sons Ltd
PY - 2020/8/1
Y1 - 2020/8/1
N2 - In somatic cells/tissues, methylation of ribosomal DNA (rDNA) increases with age and age-related pathologies, which has a direct impact on the regulation of nucleolar activity and cellular metabolism. Here, we used bisulfite pyrosequencing and show that methylation of the rDNA transcription unit including upstream control element (UCE), core promoter, 18S rDNA, and 28S rDNA in human sperm also significantly increases with donor's age. This positive correlation between sperm rDNA methylation and biological age is evolutionarily conserved among mammals with widely different life spans such as humans, marmoset, bovine, and mouse. Similar to the tandemly repeated rDNA, methylation of human α-satellite and interspersed LINE1 repeats, marmoset α-satellite, bovine alpha- and testis satellite I, mouse minor and major satellite, and LINE1-T repeats increases in the aging male germline, probably related to their sperm histone packaging. Deep bisulfite sequencing of single rDNA molecules in human sperm revealed that methylation does not only depend on donor's age, but also depend on the region and sequence context (A vs. G alleles). Both average rDNA methylation of all analyzed DNA molecules and the number of fully (>50%) methylated alleles, which are thought to be epigenetically silenced, increase with donor's age. All analyzed CpGs in the sperm rDNA transcription unit show comparable age-related methylation changes. Unlike other epigenetic aging markers, the rDNA clock appears to operate in similar ways in germline and soma in different mammalian species. We propose that sperm rDNA methylation, directly or indirectly, influences nucleolar formation and developmental potential in the early embryo.
AB - In somatic cells/tissues, methylation of ribosomal DNA (rDNA) increases with age and age-related pathologies, which has a direct impact on the regulation of nucleolar activity and cellular metabolism. Here, we used bisulfite pyrosequencing and show that methylation of the rDNA transcription unit including upstream control element (UCE), core promoter, 18S rDNA, and 28S rDNA in human sperm also significantly increases with donor's age. This positive correlation between sperm rDNA methylation and biological age is evolutionarily conserved among mammals with widely different life spans such as humans, marmoset, bovine, and mouse. Similar to the tandemly repeated rDNA, methylation of human α-satellite and interspersed LINE1 repeats, marmoset α-satellite, bovine alpha- and testis satellite I, mouse minor and major satellite, and LINE1-T repeats increases in the aging male germline, probably related to their sperm histone packaging. Deep bisulfite sequencing of single rDNA molecules in human sperm revealed that methylation does not only depend on donor's age, but also depend on the region and sequence context (A vs. G alleles). Both average rDNA methylation of all analyzed DNA molecules and the number of fully (>50%) methylated alleles, which are thought to be epigenetically silenced, increase with donor's age. All analyzed CpGs in the sperm rDNA transcription unit show comparable age-related methylation changes. Unlike other epigenetic aging markers, the rDNA clock appears to operate in similar ways in germline and soma in different mammalian species. We propose that sperm rDNA methylation, directly or indirectly, influences nucleolar formation and developmental potential in the early embryo.
KW - embryo developmental potential
KW - epigenetic clock
KW - germline aging
KW - repetitive DNA elements
KW - ribosomal DNA
KW - sperm DNA methylation
UR - http://www.scopus.com/inward/record.url?scp=85087210284&partnerID=8YFLogxK
U2 - 10.1111/acel.13181
DO - 10.1111/acel.13181
M3 - Article
C2 - 32608562
AN - SCOPUS:85087210284
SN - 1474-9718
VL - 19
JO - Aging Cell
JF - Aging Cell
IS - 8
M1 - e13181
ER -