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Tony Hunter

Salk Institute for Biological Studies, La Jolla, CA, United States 
growth control and cell cycle regulation
"Tony Hunter"

Cross-listing: Chemistry Tree


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Asher Korner grad student 1969 Cambridge (Chemistry Tree)


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kun ping lu grad student (Neurotree)
Gerald M Pao grad student Salk Institute (Neurotree)
Lincoln R. Potter post-doc Salk Institute (Chemistry Tree)
Daniel J. Donoghue post-doc 1982 Salk Institute (Chemistry Tree)
Jeroen den Hertog post-doc 1994 Salk Institute
Thomas Heimbucher post-doc 2012-2016 Salk Institute (Cell Biology Tree)


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Gerard Manning collaborator 2002- Salk Institute (FlyTree)
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Neftel C, Laffy J, Filbin MG, et al. (2019) An Integrative Model of Cellular States, Plasticity, and Genetics for Glioblastoma. Cell
Zhu Q, Hoong N, Aslanian A, et al. (2018) Heterochromatin-Encoded Satellite RNAs Induce Breast Cancer. Molecular Cell
Zheng X, Boyer L, Jin M, et al. (2016) Metabolic reprogramming during neuronal differentiation from aerobic glycolysis to neuronal oxidative phosphorylation. Elife. 5
Zheng X, Boyer L, Jin M, et al. (2016) Alleviation of neuronal energy deficiency by mTOR inhibition as a treatment for mitochondria-related neurodegeneration. Elife. 5
Li X, Jiang Y, Meisenhelder J, et al. (2016) Mitochondria-Translocated PGK1 Functions as a Protein Kinase to Coordinate Glycolysis and the TCA Cycle in Tumorigenesis. Molecular Cell. 61: 705-719
Heimbucher T, Hunter T. (2015) The C. elegans Ortholog of USP7 controls DAF-16 stability in Insulin/IGF-1-like signaling. Worm. 4: e1103429
Heimbucher T, Liu Z, Bossard C, et al. (2015) The Deubiquitylase MATH-33 Controls DAF-16 Stability and Function in Metabolism and Longevity. Cell Metabolism. 22: 151-63
Fuhs SR, Meisenhelder J, Aslanian A, et al. (2015) Monoclonal 1- and 3-Phosphohistidine Antibodies: New Tools to Study Histidine Phosphorylation. Cell. 162: 198-210
Hunter T. (2015) Discovering the first tyrosine kinase. Proceedings of the National Academy of Sciences of the United States of America. 112: 7877-82
Puto LA, Benner C, Hunter T. (2015) The DAXX co-repressor is directly recruited to active regulatory elements genome-wide to regulate autophagy programs in a model of human prostate cancer. Oncoscience. 2: 362-72
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