Rik Derynck
Affiliations: | Cell and Tissue Biology | University of California, San Francisco, San Francisco, CA |
Area:
Signal transduction, Cancer research, TGF-betaWebsite:
http://irm.ucsf.edu/derynck/Google:
"Rik Derynck"Bio:
https://cancer.ucsf.edu/people/profiles/derynck_rik.3615
https://theconferenceforum.org/conferences/immuno-oncology-360/2020-speaking-faculty/rik-derynck-phd/
Mean distance: 17.91 (cluster 7)
Cross-listing: Cell Biology Tree
BETA: Related publications
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Publications
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Gu S, Derynck R, Chen YG, et al. (2024) New progress in roles of TGF-β signaling crosstalks in cellular functions, immunity and diseases. Cell Regeneration (London, England). 13: 11 |
Budi EH, Schaub JR, Decaris M, et al. (2021) TGF-β as a driver of fibrosis: physiological roles and therapeutic opportunities. The Journal of Pathology |
Katsuno Y, Derynck R. (2021) Epithelial plasticity, epithelial-mesenchymal transition, and the TGF-β family. Developmental Cell. 56: 726-746 |
Derynck R, Turley SJ, Akhurst RJ. (2020) TGFβ biology in cancer progression and immunotherapy. Nature Reviews. Clinical Oncology |
Budi EH, Hoffman S, Gao S, et al. (2019) Integration of TGF-β-induced Smad signaling in the insulin-induced transcriptional response in endothelial cells. Scientific Reports. 9: 16992 |
Duan D, Derynck R. (2019) Transforming growth factor β (TGF-β)-induced up-regulation of TGF-β receptors at the cell surface amplifies the TGF-β response. The Journal of Biological Chemistry |
Katsuno Y, Meyer DS, Zhang Z, et al. (2019) Chronic TGF-β exposure drives stabilized EMT, tumor stemness, and cancer drug resistance with vulnerability to bitopic mTOR inhibition. Science Signaling. 12 |
Derynck R, Budi EH. (2019) Specificity, versatility, and control of TGF-β family signaling. Science Signaling. 12 |
Budi EH, Mamai O, Hoffman S, et al. (2019) Enhanced TGF-β Signaling Contributes to the Insulin-Induced Angiogenic Responses of Endothelial Cells. Iscience. 11: 474-491 |
Katsuno Y, Qin J, Oses-Prieto JA, et al. (2018) Arginine methylation of Smad7 by PRMT1 in TGF-β-induced epithelial-mesenchymal transition and epithelial stem cell generation. The Journal of Biological Chemistry |