Norbert Perrimon
Affiliations: | 1986- | Genetics | Harvard University, Cambridge, MA, United States |
Website:
https://perrimon.med.harvard.edu/Google:
"Norbert Perrimon"Bio:
Mean distance: 15.51 (cluster 11) | S | N | B | C | P |
Cross-listing: FlyTree - Computational Biology Tree
Parents
Sign in to add mentorMadeleine Gans | grad student | 1983 | University of Paris VI (FlyTree) | |
(Thesis: "Analyse Clonale de Mutations en Lignee Germinale chez la Drosophile") | ||||
Anthony P. Mahowald | post-doc | 1983-1986 | Chicago (FlyTree) |
Children
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Publications
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Parkhitko AA, Singh A, Hsieh S, et al. (2021) Cross-species identification of PIP5K1-, splicing- and ubiquitin-related pathways as potential targets for RB1-deficient cells. Plos Genetics. 17: e1009354 |
Ghosh AC, Tattikota SG, Liu Y, et al. (2021) Correction: PDGF/VEGF signaling from muscles to hepatocyte-like cells protects against obesity. Elife. 10 |
Wang W, Li J, Tan J, et al. (2021) Endonuclease G promotes autophagy by suppressing mTOR signaling and activating the DNA damage response. Nature Communications. 12: 476 |
Bosch JA, Birchak G, Perrimon N. (2021) Precise genome engineering in using prime editing. Proceedings of the National Academy of Sciences of the United States of America. 118 |
Parkhitko AA, Ramesh D, Wang L, et al. (2020) Downregulation of the tyrosine degradation pathway extends lifespan. Elife. 9 |
Ghosh AC, Tattikota SG, Liu Y, et al. (2020) PDGF/VEGF signaling from muscles to hepatocyte-like cells protects against obesity. Elife. 9 |
Hu Y, Comjean A, Rodiger J, et al. (2020) FlyRNAi.org-the database of the Drosophila RNAi screening center and transgenic RNAi project: 2021 update. Nucleic Acids Research |
Parkhitko AA, Filine E, Mohr SE, et al. (2020) Targeting metabolic pathways for extension of lifespan and healthspan across multiple species. Ageing Research Reviews. 101188 |
Hu Y, Chung V, Comjean A, et al. (2020) BioLitMine: Advanced Mining of Biomedical and Biological Literature About Human Genes and Genes from Major Model Organisms. G3 (Bethesda, Md.) |
Xia B, Amador G, Viswanatha R, et al. (2020) CRISPR-based engineering of gene knockout cells by homology-directed insertion in polyploid Drosophila S2R+ cells. Nature Protocols. 15: 3478-3498 |