Parents

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William R. Folk grad student 1987 University of Michigan (Chemistry Tree)
 (Regulation of transcription by the polyomavirus enhancer and the adenovirus e1a gene products.)
Myron Levine grad student 1987 University of Michigan (Chemistry Tree)
 (Co-chair)
Matthew S. Meselson post-doc 1987-1988 Harvard (FlyTree)
Leonard Guarente post-doc 1989-1992 MIT

Children

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Linyang Ju grad student 2017- Penn (Neurotree)
Rimma V. Belotserkovskaya grad student 2000 Penn
N. C. Tolga Emre grad student 2005 Penn
Kristin Ingvarsdottir grad student 2007 Penn
Christopher R. Edwards grad student 2012 Penn
Enrique Lin Shiao grad student 2014-2019 (Cell & Gene Therapy Tree)
Gabor Egervari post-doc 2017- Penn (Neurotree)
Ruofan Yu post-doc 2021-
Weiwei Dang post-doc 2006-2013
Morgan A. Sammons post-doc 2010-2016 Penn (Chemistry Tree)
BETA: Related publications

Publications

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Tran K, Gilbert M, Vazquez BN, et al. (2024) SIRT7 regulates NUCKS1 chromatin binding to elicit metabolic and inflammatory gene expression in senescence and liver aging. Biorxiv : the Preprint Server For Biology
Yu R, Roseman S, Siegenfeld AP, et al. (2023) CTCF/cohesin organize the ground state of chromatin-nuclear speckle association. Biorxiv : the Preprint Server For Biology
Alexander KA, Yu R, Skuli N, et al. (2023) Nuclear speckles regulate HIF-2α programs and correlate with patient survival in kidney cancer. Biorxiv : the Preprint Server For Biology
Ju L, Glastad KM, Sheng L, et al. (2023) Hormonal gatekeeping via the blood-brain barrier governs caste-specific behavior in ants. Cell
Wang L, Donahue G, Zhang C, et al. (2023) Dynamic enhancer interactome promotes senescence and aging. Biorxiv : the Preprint Server For Biology
Sen P, Donahue G, Li C, et al. (2023) Spurious intragenic transcription is a feature of mammalian cellular senescence and tissue aging. Nature Aging. 3: 402-417
Sheng L, Shields EJ, Gospocic J, et al. (2023) Ensheathing glia promote increased lifespan and healthy brain aging. Aging Cell. e13803
Kee J, Thudium S, Renner DM, et al. (2023) Author Correction: SARS-CoV-2 disrupts host epigenetic regulation via histone mimicry. Nature
Yang JH, Hayano M, Griffin PT, et al. (2023) Loss of epigenetic information as a cause of mammalian aging. Cell
Kee J, Thudium S, Renner DM, et al. (2023) Publisher Correction: SARS-CoV-2 disrupts host epigenetic regulation via histone mimicry. Nature. 1
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