Nullin Divecha

Affiliations: 
Cellular Biochemistry NKI Netherlands Cancer Institute Amsterdam 
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"Nullin Divecha"
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Vidalle MC, Sheth B, Fazio A, et al. (2023) Nuclear Phosphoinositides as Key Determinants of Nuclear Functions. Biomolecules. 13
Poli A, Pennacchio FA, Ghisleni A, et al. (2023) PIP4K2B is mechanoresponsive and controls heterochromatin-driven nuclear softening through UHRF1. Nature Communications. 14: 1432
Bowler-Barnett E, Martinez-Garcia FD, Sherwood M, et al. (2021) Proteomic characterization of GSK3β knockout shows altered cell adhesion and metabolic pathway utilisation in colorectal cancer cells. Plos One. 16: e0246707
Poli A, Abdul-Hamid S, Zaurito AE, et al. (2021) PIP4Ks impact on PI3K, FOXP3, and UHRF1 signaling and modulate human regulatory T cell proliferation and immunosuppressive activity. Proceedings of the National Academy of Sciences of the United States of America. 118
Poli A, Fiume R, Mongiorgi S, et al. (2020) Exploring the controversial role of PI3K signalling in CD4 regulatory T (T-Reg) cells. Advances in Biological Regulation. 100722
Bowler EH, Smith-Vidal A, Lester A, et al. (2019) Deep proteomic analysis of Dnmt1 mutant/hypomorphic colorectal cancer cells reveals dysregulation of epithelial-mesenchymal transition and subcellular re-localization of Beta-Catenin. Epigenetics. 1-15
Fiume R, Faenza I, Sheth B, et al. (2019) Nuclear Phosphoinositides: Their Regulation and Roles in Nuclear Functions. International Journal of Molecular Sciences. 20
Poli A, Zaurito AE, Abdul-Hamid S, et al. (2019) Phosphatidylinositol 5 Phosphate (PI5P): From Behind the Scenes to the Front (Nuclear) Stage. International Journal of Molecular Sciences. 20
Bowler EH, Bell J, Divecha N, et al. (2019) Proteomic analysis of Azacitidine-induced degradation profiles identifies multiple chromatin and epigenetic regulators including Uhrf1 and Dnmt1 as sensitive to Azacitidine. Journal of Proteome Research
Lundquist MR, Goncalves MD, Loughran RM, et al. (2018) Phosphatidylinositol-5-Phosphate 4-Kinases Regulate Cellular Lipid Metabolism By Facilitating Autophagy. Molecular Cell. 70: 531-544.e9
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