Resultados globales: 2 registros encontrados en 0.02 segundos.
Artículos, Encontrados 2 registros
Artículos Encontrados 2 registros  
1.
16 p, 2.3 MB SIRT7 mediates L1 elements transcriptional repression and their association with the nuclear lamina / Vazquez Prat, Berta Nieves (Institut Germans Trias i Pujol. Institut de Recerca contra la Leucèmia Josep Carreras) ; Thackray, J. K. (Department of Genetics. Human Genetics Institute of New Jersey. Rutgers University) ; Simonet, N. G. (Institut d'Investigació Biomèdica de Bellvitge) ; Chahar, S. (Montpellier Institute of Molecular Genetics (IGMM). CNRS. University of Montpellier) ; Kane-Goldsmith, N. (Department of Genetics. Human Genetics Institute of New Jersey. Rutgers University) ; Newkirk, S. J. (Department of Pharmaceutical Sciences. College of Pharmacy and Allied Health Professions. South Dakota State University) ; Lee, S. (Department of Pharmaceutical Sciences. College of Pharmacy and Allied Health Professions. South Dakota State University) ; Xing, J. (Department of Genetics. Human Genetics Institute of New Jersey. Rutgers University) ; Verzi, M. P. (Department of Genetics. Human Genetics Institute of New Jersey. Rutgers University) ; An, W. (Department of Pharmaceutical Sciences. College of Pharmacy and Allied Health Professions. South Dakota State University) ; Vaquero, Alejandro (Institut Germans Trias i Pujol. Institut de Recerca contra la Leucèmia Josep Carreras) ; Tischfield, J. A. (Department of Genetics. Human Genetics Institute of New Jersey. Rutgers University) ; Serrano, L. (Department of Genetics. Human Genetics Institute of New Jersey. Rutgers University) ; Universitat Autònoma de Barcelona
Long interspersed elements-1 (LINE-1, L1) are retrotransposons that hold the capacity of self-propagation in the genome with potential mutagenic outcomes. How somatic cells restrict L1 activity and how this process becomes dysfunctional during aging and in cancer cells is poorly understood. [...]
2019 - 10.1093/nar/gkz519
Nucleic acids research, Vol. 47 Núm. 15 (january 2019) , p. 7870-7885  
2.
16 p, 3.8 MB The tumor suppressor SirT2 regulates cell cycle progression and genome stability by modulating the mitotic deposition of H4K20 methylation / Serrano, Lourdes (Department of Genetics, the Human Genetics Institute of New Jersey. Rutgers University) ; Martínez-Redondo, Paloma (Institut d'Investigació Biomèdica de Bellvitge) ; Marazuela Duque, Anna (Institut d'Investigació Biomèdica de Bellvitge) ; Vazquez Prat, Berta Nieves (Department of Genetics, the Human Genetics Institute of New Jersey. Rutgers University) ; Dooley, Scott J. (Department of Genetics, the Human Genetics Institute of New Jersey. Rutgers University) ; Voigt, Philipp (Department of Biochemistry, New York University School of Medicine) ; Beck, David B. (Department of Biochemistry, New York University School of Medicine) ; Kane-Goldsmith, Noriko (Department of Genetics, the Human Genetics Institute of New Jersey. Rutgers University) ; Tong, Qiang (Children's Nutrition Research Center) ; Rabanal Prados, Rosa Ma. (Rosa Maria) (Universitat Autònoma de Barcelona. Departament de Medicina i Cirurgia Animals) ; Fondevila, Dolors (Universitat Autònoma de Barcelona. Departament de Medicina i Cirurgia Animals) ; Muñoz, Purificación (Institut d'Investigació Biomèdica de Bellvitge) ; Krüger, Marcus (Max Planck Institute for Heart and Lung Research. Department of Cardiac Development and Remodeling) ; Tischfield, Jay A. (Department of Genetics, the Human Genetics Institute of New Jersey. Rutgers University) ; Vaquero, Alejandro (Institut d'Investigació Biomèdica de Bellvitge)
The establishment of the epigenetic mark H4K20me1 (monomethylation of H4K20) by PR-Set7 during G2/M directly impacts S-phase progression and genome stability. However, the mechanisms involved in the regulation of this event are not well understood. [...]
2013 - 10.1101/gad.211342.112
Genes & Development, 2013  

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1 Tischfield, J.
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1 Tischfield, Jay A.
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