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The Journal of Biological Chemistry|November 6, 2012
Staurosporines disrupt phosphatidylserine trafficking and mislocalize Ras proteinsKwang-jin Cho, Jin-Hee Park, Andrew M Piggott, et al.The Journal of Biological Chemistry|April 15, 2003
Caveolin interacts with the angiotensin II type 1 receptor during exocytic transport but not at the plasma membraneBruce D Wyse, Ian A Prior, Hongwei Qian, et al.Nature Communications|January 28, 2023
Glycolysis regulates KRAS plasma membrane localization and function through defined glycosphingolipidsJunchen Liu, Ransome van der Hoeven, Walaa E Kattan, et al.The Journal of Biological Chemistry|March 9, 2002
Inhibition of lipid raft-dependent signaling by a dystrophy-associated mutant of caveolin-3Amanda J Carozzi, Sandrine Roy, Isabel C Morrow, et al.The Journal of Biological Chemistry|August 25, 2009
Localized diacylglycerol-dependent stimulation of Ras and Rap1 during phagocytosisRoberto J Botelho, Rene E Harrison, James C Stone, et al.Elife|August 15, 2015
Specific cancer-associated mutations in the switch III region of Ras increase tumorigenicity by nanocluster augmentationMaja Šolman, Alessio Ligabue, Olga Blaževitš, et al.The Journal of Biological Chemistry|August 8, 2009
Nucleophosmin and nucleolin regulate K-Ras plasma membrane interactions and MAPK signal transductionKerry L Inder, Chiyan Lau, Dorothy Loo, et al.Current Biology : CB|May 8, 2012
Raf inhibitors target ras spatiotemporal dynamicsKwang-jin Cho, Rinshi S Kasai, Jin-Hee Park, et al.The Journal of Cell Biology|January 26, 2021
Caveolin-1 and cavin1 act synergistically to generate a unique lipid environment in caveolaeYong Zhou, Nicholas Ariotti, James Rae, et al.The Journal of Cell Biology|February 26, 2014
Caveolae regulate the nanoscale organization of the plasma membrane to remotely control Ras signalingNicholas Ariotti, Manuel A Fernández-Rojo, Yong Zhou, et al.Pageof 16