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Arnold Levine, PhD

Systems Biology Institute for Advanced Study, Princeton, NJ, United States 
p53 tumor suppressor gene
"Arnold J. Levine"

Mean distance: 15.37 (cluster 32)


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Harold S. Ginsberg grad student 1966 University of Pennsylvania School of Medicine (ID Tree)
 (A study of the role of adenovirus structural proteins in the cessation of host cell biosynthetic functions)
Robert L. Sinsheimer post-doc 1968 Caltech (Chemistry Tree)


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Jonathan Wilson Yewdell research assistant 1973-1975 Princeton (Cell Biology Tree)
Jiandong Chen grad student Princeton (Cell Biology Tree)
Fei Su grad student
Lisa A. Taneyhill grad student 2000 Princeton
Lifeng Xu grad student 2000 Princeton
Michael H. Overholtzer grad student 2002 Princeton
Benjamin D. Greenbaum post-doc (Physics Tree)
Rudolf Jaenisch post-doc 1970-1972 Princeton
Philip J. Laipis post-doc 1974 Princeton (Cell Biology Tree)
Jamil A Momand post-doc 1989-1992 Princeton (Chemistry Tree)
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Boeke JD, Burns KH, Chiappinelli KB, et al. (2023) Proceedings of the inaugural Dark Genome Symposium: November 2022. Mobile Dna. 14: 18
Hoyos D, Zappasodi R, Schulze I, et al. (2022) Author Correction: Fundamental immune-oncogenicity trade-offs define driver mutation fitness. Nature
Hoyos D, Zappasodi R, Schulze I, et al. (2022) Fundamental immune-oncogenicity trade-offs define driver mutation fitness. Nature
Hoyos D, Greenbaum B, Levine AJ. (2022) The genotypes and phenotypes of missense mutations in the proline domain of the p53 protein. Cell Death and Differentiation. 29: 938-945
Nogalski MT, Solovyov A, Kulkarni AS, et al. (2019) A tumor-specific endogenous repetitive element is induced by herpesviruses. Nature Communications. 10: 90
Balachandran VP, Łuksza M, Zhao JN, et al. (2017) Identification of unique neoantigen qualities in long-term survivors of pancreatic cancer. Nature
Łuksza M, Riaz N, Makarov V, et al. (2017) A neoantigen fitness model predicts tumour response to checkpoint blockade immunotherapy. Nature
Zhu J, Dou Z, Sammons MA, et al. (2016) Lysine methylation represses p53 activity in teratocarcinoma cancer cells. Proceedings of the National Academy of Sciences of the United States of America
Levine AJ, Ting DT, Greenbaum BD. (2016) P53 and the defenses against genome instability caused by transposons and repetitive elements. Bioessays : News and Reviews in Molecular, Cellular and Developmental Biology
Tanne A, Muniz L, Ting D, et al. (2016) Abstract A077: Unraveling predicted immunomodulatory effects of novel cancer-associated noncoding RNAs Cancer Immunology Research. 4
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