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Asenius, F.

Publications and source records attributed to Asenius, F..

2 recordsLinked to original sources

Ribosomal DNA copy number is associated with body mass in humans and other mammals

Body mass results from a complex interplay between genetics and environment. The contribution of genetic variation to body mass has been extensively studied, but due to the technical limitations of platforms used for population scale studies, repetitive parts of the genome have not previously been considered. Here we applied genome-wide approaches to identify an association between adult body mass and the copy number (CN) of 45S-ribosomal DNA (rDNA). rDNA codes for the rRNA components of the ribosome and exists in hundreds of copies/cell in mammals. Inter-individual variation in rDNA CN has not previously been documented but has not been associated with a mammalian phenotype. Here, we show that germ-line inherited rDNA CN is associated with post-pubertal growth rate in rats and BMI in adult humans. rDNA CN variation is not associated with rRNA transcription rates in adult tissues, suggesting the mechanistic link occurs earlier in development. This is supported by our observation that it is growth rate and body mass, rather than obesity that are associated with copy number and that these phenotypes emerge prior to adulthood. We present hypotheses for future investigation into the mechanistic basis of this association.

genomics↗

DNA methylation covariation in human whole blood and sperm: implications for studies of intergenerational epigenetic effects

BackgroundEpidemiological studies suggest that paternal obesity may increase the risk of fathering small for gestational age offspring. Studies in non-human mammals suggest that such associations could be mediated by DNA methylation changes in spermatozoa that influence offspring development in utero. Human obesity is associated with differential DNA methylation in peripheral blood. It is unclear, however, whether this differential DNA methylation is reflected in spermatozoa. We profiled genome-wide DNA methylation using the Illumina MethylationEPIC array in matched human blood and sperm from lean (discovery n=47; replication n=21) and obese (n=22) males to analyse tissue covariation of DNA methylation, and identify whether this covariation is influenced by obesity. ResultsDNA methylation signatures of human blood and spermatozoa are highly discordant, and methylation levels are correlated at only a minority of CpG sites ([~]1%). While at the majority of these sites, DNA methylation appears to be influenced by genetic variation, obesity-associated DNA methylation in blood was not generally reflected in spermatozoa, and obesity did not influence covariation patterns. However, one cross-tissue obesity-specific hypermethylated site (cg19357369; chr4:2429884; P=8.95 x 10-8; beta=0.02) was identified, warranting replication and further investigation. When compared to a wide range of human somatic tissue samples (n=5,917), spermatozoa displayed differential DNA methylation in pathways enriched in transcriptional regulation. ConclusionsHuman sperm displays a unique DNA methylation profile that is highly discordant to, and practically uncorrelated with, that of matched peripheral blood. Obesity only nominally influences sperm DNA methylation, making it an unlikely mediator of intergenerational effects of metabolic traits.

genomics↗