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Cancer Research|September 2, 2021
Patient-Derived Xenografts to Study Cancer Metabolism: When Does X Mark the Spot?Christopher S Nabel, Matthew G Vander HeidenTranslational Lung Cancer Research|January 20, 2025
Fuel for thought: targeting metabolism in lung cancerJaime L Schneider, SeongJun Han, Christopher S NabelACS Chemical Biology|October 19, 2011
The curious chemical biology of cytosine: deamination, methylation, and oxidation as modulators of genomic potentialChristopher S Nabel, Sara A Manning, Rahul M KohliBlood|March 14, 2014
HHV-8-negative, idiopathic multicentric Castleman disease: novel insights into biology, pathogenesis, and therapyDavid C Fajgenbaum, Frits van Rhee, Christopher S NabelImmunity|August 14, 2024
Macrophages dig into the obesity paradox in cancerChristopher S Nabel, Florian Gourgue, Matthew G Vander HeidenJournal of Virology|January 14, 2011
Ebolavirus proteins suppress the effects of small interfering RNA by direct interaction with the mammalian RNA interference pathwayGiulia Fabozzi, Christopher S Nabel, Michael A Dolan, et al.Biochemistry|April 11, 2017
DNA Methyltransferases Demonstrate Reduced Activity against Arabinosylcytosine: Implications for Epigenetic Instability in Acute Myeloid LeukemiaChristopher S Nabel, Jamie E DeNizio, Martin Carroll, et al.Proceedings of the National Academy of Sciences of the United States of America|August 15, 2013
Nucleic acid determinants for selective deamination of DNA over RNA by activation-induced deaminaseChristopher S Nabel, Jae W Lee, Laura C Wang, et al.The Oncologist|March 23, 2024
Single-Cell Sequencing Illuminates Thymic Development: An Updated Framework for Understanding Thymic Epithelial TumorsChristopher S Nabel, Jeanne B Ackman, Yin P Hung, et al.Nucleic Acids Research|May 5, 2017
APOBEC3A efficiently deaminates methylated, but not TET-oxidized, cytosine bases in DNAEmily K Schutsky, Christopher S Nabel, Amy K F Davis, et al.Pageof 4