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W. Brent Derry

Affiliations: 
University of Toronto, Toronto, ON, Canada 
Website:
http://www.utoronto.ca/derrylab/index.php
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Publications

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Xiao YX, Lee SY, Aguilera-Uribe M, et al. (2024) The TSC22D, WNK, and NRBP gene families exhibit functional buffering and evolved with Metazoa for cell volume regulation. Cell Reports. 43: 114417
Abdelilah-Seyfried S, Tournier-Lasserve E, Derry WB. (2020) Blocking Signalopathic Events to Treat Cerebral Cavernous Malformations. Trends in Molecular Medicine. 26: 874-887
Chapman EM, Lant B, Ohashi Y, et al. (2019) A conserved CCM complex promotes apoptosis non-autonomously by regulating zinc homeostasis. Nature Communications. 10: 1791
Tran AT, Chapman EM, Flamand MN, et al. (2019) MiR-35 buffers apoptosis thresholds in the C. elegans germline by antagonizing both MAPK and core apoptosis pathways. Cell Death and Differentiation
Koskimäki J, Girard R, Li Y, et al. (2019) Comprehensive transcriptome analysis of cerebral cavernous malformation across multiple species and genotypes. Jci Insight. 4
Lant B, Pal S, Chapman EM, et al. (2018) Interrogating the ccm-3 Gene Network. Cell Reports. 24: 2857-2868.e4
Otten C, Knox J, Boulday G, et al. (2018) Systematic pharmacological screens uncover novel pathways involved in cerebral cavernous malformations. Embo Molecular Medicine
Pal S, Lant B, Yu B, et al. (2017) CCM-3 Promotes C. elegans Germline Development by Regulating Vesicle Trafficking Cytokinesis and Polarity. Current Biology : Cb
Eroglu M, Derry WB. (2016) Your neighbours matter - non-autonomous control of apoptosis in development and disease. Cell Death and Differentiation
Mateo AF, Kessler Z, Jolliffe AK, et al. (2016) The p53-like Protein CEP-1 Is Required for Meiotic Fidelity in C. elegans. Current Biology : Cb
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