John Blenis

Harvard Medical School, Boston, MA, United States 
Cell biology
"John Blenis"
Mean distance: 16.2 (cluster 11)
Cross-listing: Cell Biology Tree


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Prerana Shrestha research assistant 2002-2003 Harvard Medical School
Margaret M. Chou grad student (Cell Biology Tree)
Jeannie Li post-doc (Chemistry Tree)
Jeffrey P MacKeigan post-doc 2003-2004 Harvard Medical School
Jeffrey P. MacKeigan post-doc 2003-2004 Harvard Medical School
Philippe P. Roux post-doc 2002-2006 Harvard Medical School
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Samson SC, Elliott A, Mueller BD, et al. (2019) p90 ribosomal S6 kinase (RSK) phosphorylates myosin phosphatase and thereby controls edge dynamics during cell migration. The Journal of Biological Chemistry
Liu P, Gan W, Inuzuka H, et al. (2019) Author Correction: Sin1 phosphorylation impairs mTORC2 complex integrity and inhibits downstream Akt signalling to suppress tumorigenesis. Nature Cell Biology
Shin S, Buel GR, Nagiec MJ, et al. (2019) ERK2 regulates epithelial-to-mesenchymal plasticity through DOCK10-dependent Rac1/FoxO1 activation. Proceedings of the National Academy of Sciences of the United States of America
Zheng Y, Lin TY, Lee G, et al. (2018) Mitochondrial One-Carbon Pathway Supports Cytosolic Folate Integrity in Cancer Cells. Cell. 175: 1546-1560.e17
He L, Gomes AP, Wang X, et al. (2018) mTORC1 Promotes Metabolic Reprogramming by the Suppression of GSK3-Dependent Foxk1 Phosphorylation. Molecular Cell
Lee G, Zheng Y, Cho S, et al. (2017) Post-transcriptional Regulation of De Novo Lipogenesis by mTORC1-S6K1-SRPK2 Signaling. Cell
Yoon SO, Shin S, Karreth FA, et al. (2017) Focal Adhesion- and IGF1R-Dependent Survival and Migratory Pathways Mediate Tumor Resistance to mTORC1/2 Inhibition. Molecular Cell
Wada S, Neinast M, Jang C, et al. (2016) The tumor suppressor FLCN mediates an alternate mTOR pathway to regulate browning of adipose tissue. Genes & Development
Li C, Li N, Liu X, et al. (2016) Proapoptotic protein Bim attenuates estrogen-enhanced survival in lymphangioleiomyomatosis. Jci Insight. 1: e86629
Li J, Shin S, Sun Y, et al. (2016) mTORC1-driven tumor cells are highly sensitive to therapeutic targeting by antagonists of oxidative stress. Cancer Research
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