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Epigenetics Insights|April 26, 2019
Transgenerational Epigenetic Inheritance Is Revealed as a Multi-step Process by Studies of the SET-Domain Proteins SET-25 and SET-32Rachel M Woodhouse, Alyson AsheBiochemical Society Transactions|June 16, 2020
How do histone modifications contribute to transgenerational epigenetic inheritance in C. elegans?Rachel M Woodhouse, Alyson AsheCell Reports|November 22, 2018
Chromatin Modifiers SET-25 and SET-32 Are Required for Establishment but Not Long-Term Maintenance of Transgenerational Epigenetic InheritanceRachel M Woodhouse, Gabriele Buchmann, Matthew Hoe, et al.Genetics|June 3, 2025
A unified framework governing the establishment and maintenance of transgenerational epigenetic inheritanceRachel M Woodhouse, Natalya Frolows, Dhruv S Monteiro, et al.Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences|April 19, 2021
Small RNAs and chromatin in the multigenerational epigenetic landscape of Caenorhabditis elegansNatalya Frolows, Alyson AsheTrends in Genetics : TIG|November 28, 2006
Another role for RNA: a messenger across generationsAlyson Ashe, Emma WhitelawMolecular Cell|February 21, 2025
Moving epigenetic inheritance into the space age: Evidence that 3D genome organization is required for the establishment of epigenetic memoryJessica J Hawes, Alyson AshePhilosophical Transactions of the Royal Society of London. Series B, Biological Sciences|April 19, 2021
How does epigenetics influence the course of evolution?Alyson Ashe, Vincent Colot, Benjamin P OldroydIscience|December 5, 2022
Mitochondrial succinate dehydrogenase function is essential for sperm motility and male fertilityRachel M Woodhouse, Natalya Frolows, Guoqiang Wang, et al.G3 (Bethesda, Md.)|November 23, 2012
A forward genetic screen identifies eukaryotic translation initiation factor 3, subunit H (eIF3h), as an enhancer of variegation in the mouseLucia Daxinger, Harald Oey, Anwyn Apedaile, et al.Pageof 4