Picture of Thomas Roberts

Thomas McCoy Roberts, Ph.D.

Professor of Biological Chemistry and Molecular Pharmacology

Research in the Roberts laboratory is centered on the molecular mechanisms of signal transduction in response to activated tyrosine kinases

Research:

Dr. Roberts is a Professor of Biological Chemistry and Molecular Pharmacology at Harvard Medical School and serves as Co-Chairman for the Department of Cancer Biology at Dana-Farber Cancer Institute. Dr. Roberts received his PhD from Harvard University where he also completed a postdoctoral fellowship. Dr Roberts’ laboratory has played a key role in the study of signal transduction and its translation into cancer therapy. The first definitive studies on phosphoinositide 3 (PI3) kinase were done by the Roberts lab in collaboration with the lab of Lewis Cantley.  In addition, the Roberts lab pioneered studies on the regulation of the serine/threonine kinase, Raf-1, and first characterized the interaction of 14-3-3 molecules with key signal transducers including Raf-1.   Due to the importance of PI3 kinase in human cancer, Roberts has studied it in detail, collaborating with Jean Zhao to generate conditional knockout mice for the commonly expressed catalytic subunits of PI3K.  The end goal of these studies, determining which isoforms to target in specific cancers, underlies the superior performance of isoform-specific inhibitors in the clinic.  Moreover, Zhao and Roberts gained a new understanding of a surprising functional specialization in the two enzymes (termed p110 and p110): p110 plays the major role in receptor tyrosine kinase and ras signaling, while p110 plays the major part in GPCR signaling and in tumors arising from PTEN loss.  Notably Dr Roberts’ basic research on tyrosine kinases carried out by Drs. Brian Druker and Helen Piwnica-Worms facilitated the kinase inhibitor program at Ciba Geigy, which led to the first successful tyrosine kinase cancer therapeutic, Gleevec.  Similarly, his research collaborations on PI3 kinase has facilitated the development of multiple classes of PI3Kinase inhibitors

Address: 

Dana-Farber Cancer Institute

Smith Building, Room 970A

450 Brookline Avenue

Boston, MA 02215

Publications View
Tyrosine phosphorylation of the proto-oncoprotein Raf-1 is regulated by Raf-1 itself and the phosphatase Cdc25A.
Authors: Authors: Xia K, Lee RS, Narsimhan RP, Mukhopadhyay NK, Neel BG, Roberts TM.
Mol Cell Biol
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Regulation of G1 progression by the PTEN tumor suppressor protein is linked to inhibition of the phosphatidylinositol 3-kinase/Akt pathway.
Authors: Authors: Ramaswamy S, Nakamura N, Vazquez F, Batt DB, Perera S, Roberts TM, Sellers WR.
Proc Natl Acad Sci U S A
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DEF-1, a novel Src SH3 binding protein that promotes adipogenesis in fibroblastic cell lines.
Authors: Authors: King FJ, Hu E, Harris DF, Sarraf P, Spiegelman BM, Roberts TM.
Mol Cell Biol
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Discovery of estrogen-responsive genes using an improved method which combines subtractive hybridization and PCR.
Authors: Authors: Liu W, Su W, Roberts TM.
Nucleic Acids Res
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Cell density modulates protein-tyrosine phosphorylation.
Authors: Authors: Batt DB, Roberts TM.
J Biol Chem
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Inactivation of pRB-related proteins p130 and p107 mediated by the J domain of simian virus 40 large T antigen.
Authors: Authors: Stubdal H, Zalvide J, Campbell KS, Schweitzer C, Roberts TM, DeCaprio JA.
Mol Cell Biol
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DnaJ/hsp40 chaperone domain of SV40 large T antigen promotes efficient viral DNA replication.
Authors: Authors: Campbell KS, Mullane KP, Aksoy IA, Stubdal H, Zalvide J, Pipas JM, Silver PA, Roberts TM, Schaffhausen BS, DeCaprio JA.
Genes Dev
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A PDGF-regulated immediate early gene response initiates neuronal differentiation in ventricular zone progenitor cells.
Authors: Authors: Williams BP, Park JK, Alberta JA, Muhlebach SG, Hwang GY, Roberts TM, Stiles CD.
Neuron
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Mutation in the Jak kinase JH2 domain hyperactivates Drosophila and mammalian Jak-Stat pathways.
Authors: Authors: Luo H, Rose P, Barber D, Hanratty WP, Lee S, Roberts TM, D'Andrea AD, Dearolf CR.
Mol Cell Biol
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Erythropoietin activates Raf1 by an Shc-independent pathway in CTLL-EPO-R cells.
Authors: Authors: Barber DL, Corless CN, Xia K, Roberts TM, D'Andrea AD.
Blood
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