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
PCTAIRE1 promotes mitotic progression and resistance against antimitotic and apoptotic signals.
Authors: Authors: Gillani SQ, Reshi I, Nabi N, Un Nisa M, Sarwar Z, Bhat S, Roberts TM, Higgins JMG, Andrabi S.
J Cell Sci
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RNAi-Based Approaches for Pancreatic Cancer Therapy.
Authors: Authors: Kim MJ, Chang H, Nam G, Ko Y, Kim SH, Roberts TM, Ryu JH.
Pharmaceutics
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The Mediator captures CDK7, an attractive transcriptional target in cancer.
Authors: Authors: Wang Y, Manokaran C, Wu S, Roberts TM.
Cancer Cell
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TMTpro-18plex: The Expanded and Complete Set of TMTpro Reagents for Sample Multiplexing.
Authors: Authors: Li J, Cai Z, Bomgarden RD, Pike I, Kuhn K, Rogers JC, Roberts TM, Gygi SP, Paulo JA.
J Proteome Res
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The role of the PIK3CA gene in the development and aging of the brain.
Authors: Authors: Xie S, Ni J, Guo H, Luu V, Wang Y, Zhao JJ, Roberts TM.
Sci Rep
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Multiplex Immunofluorescence in Formalin-Fixed Paraffin-Embedded Tumor Tissue to Identify Single-Cell-Level PI3K Pathway Activation.
Authors: Authors: Stopsack KH, Huang Y, Tyekucheva S, Gerke TA, Bango C, Elfandy H, Bowden M, Penney KL, Roberts TM, Parmigiani G, Kantoff PW, Mucci LA, Loda M.
Clin Cancer Res
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PIK3CA C-terminal frameshift mutations are novel oncogenic events that sensitize tumors to PI3K-a inhibition.
Authors: Authors: Spangle JM, Von T, Pavlick DC, Khotimsky A, Zhao JJ, Roberts TM.
Proc Natl Acad Sci U S A
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Divergent Roles of PI3K Isoforms in PTEN-Deficient Glioblastomas.
Authors: Authors: Xie S, Ni J, McFaline-Figueroa JR, Wang Y, Bronson RT, Ligon KL, Wen PY, Roberts TM, Zhao JJ.
Cell Rep
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Polyomavirus Small T Antigen Induces Apoptosis in Mammalian Cells through the UNC5B Pathway in a PP2A-Dependent Manner.
Authors: Authors: Bhat SA, Sarwar Z, Gillani SQ, Un Nisa M, Reshi I, Nabi N, Xie S, Fazili KM, Roberts TM, Andrabi S.
J Virol
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Combination of KRAS gene silencing and PI3K inhibition for ovarian cancer treatment.
Authors: Authors: Kim MJ, Lee SJ, Ryu JH, Kim SH, Kwon IC, Roberts TM.
J Control Release
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