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Cell|December 2, 2017
Epsin-Dependent Ligand Endocytosis Activates Notch by ForcePaul D Langridge, Gary StruhlCurrent Biology : CB|March 29, 2022
Evolutionary plasticity in the requirement for force exerted by ligand endocytosis to activate C. elegans Notch proteinsPaul D Langridge, Alejandro Garcia Diaz, Jessica Yu Chan, et al.Science Signaling|June 10, 2025
An in vivo screen identifies diverse domains that can act as force-dependent proteolytic switches for Notch activationFrederick C Baker, Jacob Harman, Trevor Jordan, et al.Biorxiv : the Preprint Server for Biology|July 19, 2024
An in vivo screen for proteolytic switch domains that can mediate Notch activation by forceFrederick C Baker, Jacob Harman, Trevor Jordan, et al.Plos Biology|October 17, 2015
Scaling the Drosophila Wing: TOR-Dependent Target Gene Access by the Hippo Pathway Transducer YorkieJoseph Parker, Gary StruhlPlos Biology|March 3, 2021
A unified mechanism for the control of Drosophila wing growth by the morphogens Decapentaplegic and WinglessMyriam Zecca, Gary StruhlNature|August 10, 2004
Reading the Hedgehog morphogen gradient by measuring the ratio of bound to unbound Patched proteinAndreu Casali, Gary StruhlDevelopment (Cambridge, England)|October 8, 2004
Drosophila Epsin mediates a select endocytic pathway that DSL ligands must enter to activate NotchWeidong Wang, Gary StruhlDevelopment (Cambridge, England)|July 20, 2007
Control of Drosophila wing growth by the vestigial quadrant enhancerMyriam Zecca, Gary StruhlProceedings of the National Academy of Sciences of the United States of America|December 1, 2020
Control of Drosophila wing size by morphogen range and hormonal gatingJoseph Parker, Gary StruhlPageof 4