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No evidence for cumulative effects in a Dnmt3b hypomorph across multiple generations
Authors:Neil A Youngson  Trevor Epp  Amity R Roberts  Lucia Daxinger  Alyson Ashe  Edward Huang  Krystal L Lester  Sarah K Harten  Graham F Kay  Timothy Cox  Jacqueline M Matthews  Suyinn Chong  Emma Whitelaw
Institution:1. Queensland Institute of Medical Research, Herston, Brisbane, QLD, 4006, Australia
2. Department of Pharmacology, School of Medical Sciences, University of New South Wales, Sydney, NSW, 2052, Australia
3. Institute of Molecular Genetics of the ASCR, v. v. i., Vídeňská 1083, 142 20, Prague 4, Czech Republic
4. School of Biomolecular and Physical Sciences, Griffith University, Nathan, QLD, 4111, Australia
5. School of Molecular Bioscience, University of Sydney, Sydney, NSW, 2006, Australia
6. Division of Craniofacial Medicine, Department of Pediatrics, University of Washington, Seattle, WA, 98195, USA
7. Mater Research, TRI Building, Level 4, 37 Kent Street, Woolloongabba, QLD, 4102, Australia
8. School of Molecular Sciences, Department of Genetics, La Trobe Institute for Molecular Science, Melbourne, VIC, 3086, Australia
Abstract:Observations of inherited phenotypes that cannot be explained solely through genetic inheritance are increasing. Evidence points to transmission of non-DNA molecules in the gamete as mediators of the phenotypes. However, in most cases it is unclear what the molecules are, with DNA methylation, chromatin proteins, and small RNAs being the most prominent candidates. From a screen to generate novel mouse mutants of genes involved in epigenetic reprogramming, we produced a DNA methyltransferase 3b allele that is missing exon 13. Mice that are homozygous for the mutant allele have smaller stature and reduced viability, with particularly high levels of female post-natal death. Reduced DNA methylation was also detected at telocentric repeats and the X-linked Hprt gene. However, none of the abnormal phenotypes or DNA methylation changes worsened with multiple generations of homozygous mutant inbreeding. This suggests that in our model the abnormalities are reset each generation and the processes of transgenerational epigenetic reprogramming are effective in preventing their inheritance.
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