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The EMBO Journal|January 15, 2014
Short-circuiting microtubule plus and minus end proteins in spindle positioningStephen L RogersPlos One|April 18, 2015
The non-catalytic domains of Drosophila katanin regulate its abundance and microtubule-disassembly activityKyle D Grode, Stephen L RogersNature Protocols|April 5, 2008
Culture of Drosophila S2 cells and their use for RNAi-mediated loss-of-function studies and immunofluorescence microscopyStephen L Rogers, Gregory C RogersDevelopmental Biology|August 17, 2014
The Fog signaling pathway: insights into signaling in morphogenesisAlyssa J Manning, Stephen L RogersNature Protocols|October 1, 2011
Using the Drosophila melanogaster D17-c3 cell culture system to study cell motilityJoshua D Currie, Stephen L RogersPlos One|September 26, 2015
TOG Proteins Are Spatially Regulated by Rac-GSK3β to Control Interphase Microtubule DynamicsKathryn P Trogden, Stephen L RogersMolecular Biology of the Cell|September 6, 2013
Drosophila Ric-8 interacts with the Gα12/13 subunit, Concertina, during activation of the Folded gastrulation pathwayKimberly A Peters, Stephen L RogersDevelopmental Biology|October 9, 2007
The Drosophila Dead end Arf-like3 GTPase controls vesicle trafficking during tracheal fusion cell morphogenesisLan Jiang, Stephen L Rogers, Stephen T CrewsPlos One|July 9, 2010
Expression levels of a kinesin-13 microtubule depolymerase modulates the effectiveness of anti-microtubule agentsGregory V Schimizzi, Joshua D Currie, Stephen L RogersBiorxiv : the Preprint Server for Biology|April 10, 2023
CryoET shows cofilactin filaments inside the microtubule lumenCamilla Ventura Santos, Stephen L Rogers, Andrew P CarterPageof 6