Robert A. Weinberg, Ph.D.
Affiliations: | Biology | Massachusetts Institute of Technology, Cambridge, MA, United States |
Area:
oncogenesWebsite:
https://biology.mit.edu/people/robert_weinbergGoogle:
"Robert A. Weinberg"Bio:
http://www.nasonline.org/member-directory/members/45745.html
http://web.wi.mit.edu/weinberg/pub/
DOI: 10.1073/pnas.58.3.1088
Cross-listing: Chemistry Tree - Cell Biology Tree
Parents
Sign in to add mentorSheldon Penman | grad student | 1969 | MIT (Neurotree) | |
(Polyacrylamide gel electrophoresis of HeLa cell nuclear RNA.) | ||||
Renato Dulbecco | post-doc | Salk Institute | ||
Ernest Winocour | post-doc | Weizmann Institute (Neurotree) | ||
David Baltimore | research scientist | MIT (Chemistry Tree) |
Children
Sign in to add traineeCori Bargmann | grad student | Bell Laboratories, Columbia University, MIT, UC Berkeley (Neurotree) | |
Mitchell Goldfarb | grad student | Broad Institute of Massachusetts Institute of Technology and Harvard (Neurotree) | |
William C. Hahn | grad student | (Neuro-oncology Tree) | |
Sendurai A Mani | grad student | (Cell Biology Tree) | |
Luis Parada | grad student | MIT (Neurotree) | |
Clifford J. Tabin | grad student | 1980-1984 | MIT |
Charles F. Albright | post-doc | MIT (Chemistry Tree) | |
Christopher M. Counter | post-doc | Duke Medical School (Telomere and Telomerase Tree) | |
Sean Egan | post-doc | Whitehead Institute (MIT) (Cell Biology Tree) | |
Wenjun Guo | post-doc | MIT (Neurotree) | |
Tyler Jacks | post-doc | Whitehead Institute (MIT) (Cell Biology Tree) | |
Matthew Meyerson | post-doc | MIT (Neurotree) | |
Jeffrey Settleman | post-doc | MIT (Cell Biology Tree) | |
Peter Sicinski | post-doc | MIT (Cell Biology Tree) | |
Yosef Yarden | post-doc | (Cell Biology Tree) | |
David Frederick Stern | post-doc | 1983 | Whitehead Institute for Biomedical Research (Microtree) |
Michael Gilman | post-doc | 1983-1986 | Whitehead Institute (Chemistry Tree) |
Mien-Chie Hung | post-doc | 1984-1986 | MIT (E-Tree) |
Julian Downward | post-doc | 1986-1989 | MIT (Chemistry Tree) |
Rene Medema | post-doc | 1993-1995 | Whitehead Institute (MIT) (Cell Biology Tree) |
BETA: Related publications
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Publications
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Lambert AW, Fiore C, Chutake Y, et al. (2022) ΔNp63/p73 drive metastatic colonization by controlling a regenerative epithelial stem cell program in quasi-mesenchymal cancer stem cells. Developmental Cell. 57: 2714-2730.e8 |
Zhang Y, Donaher JL, Das S, et al. (2022) Genome-wide CRISPR screen identifies PRC2 and KMT2D-COMPASS as regulators of distinct EMT trajectories that contribute differentially to metastasis. Nature Cell Biology |
Yang J, Antin P, Berx G, et al. (2021) Author Correction: Guidelines and definitions for research on epithelial-mesenchymal transition. Nature Reviews. Molecular Cell Biology |
Hamza B, Miller AB, Meier L, et al. (2021) Measuring kinetics and metastatic propensity of CTCs by blood exchange between mice. Nature Communications. 12: 5680 |
Zou Y, Henry WS, Ricq EL, et al. (2020) Plasticity of ether lipids promotes ferroptosis susceptibility and evasion. Nature |
Wilson MM, Weinberg RA, Lees JA, et al. (2020) Emerging Mechanisms by which EMT Programs Control Stemness. Trends in Cancer |
Yang J, Antin P, Berx G, et al. (2020) Guidelines and definitions for research on epithelial-mesenchymal transition. Nature Reviews. Molecular Cell Biology |
Zhang S, Iyer S, Ran H, et al. (2020) Abstract PR12: Genetic aberrations dictate distinct tumor immune landscape and chemosensitivity in HGSOC Clinical Cancer Research. 26 |
Lambert A, Fiore C, Chutake Y, et al. (2020) Abstract P4-04-02: Epigenomic analysis of cancer stem cells (CSCs) from triple-negative breast cancer (TNBC) reveals p63 and p73 as core metastasis drivers Cancer Research. 80 |
Böpple K, Dong M, Kleih M, et al. (2020) Abstract 4320: Ovarian cancer persister cells are characterized by enhanced ER stress gene expression correlating with poor survival Endocrinology |