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Results: 1-7 |
Results: 7

Authors: Oh, P Schnitzer, JE
Citation: P. Oh et Je. Schnitzer, Segregation of heterotrimeric G proteins in cell surface microdomains - G(q) binds caveolin to concentrate in caveolae, whereas G(i) and G(s) target lipid rafts by default, MOL BIOL CE, 12(3), 2001, pp. 685-698

Authors: Schnitzer, JE
Citation: Je. Schnitzer, Caveolae: from basic trafficking mechanisms to targeting transcytosis for tissue-specific drug and gene delivery in vivo, ADV DRUG DE, 49(3), 2001, pp. 265-280

Authors: McIntosh, DP Schnitzer, JE
Citation: Dp. Mcintosh et Je. Schnitzer, Caveolae require intact VAMP for targeted transport in vascular endothelium, AM J P-HEAR, 277(6), 1999, pp. H2222-H2232

Authors: Oh, P Schnitzer, JE
Citation: P. Oh et Je. Schnitzer, Immunoisolation of caveolae with high affinity antibody binding to the oligomeric caveolin cage. Toward understanding the basis of purification (vol 274, pg 23144, 1999), J BIOL CHEM, 274(41), 1999, pp. 29582-29582

Authors: Oh, P Schnitzer, JE
Citation: P. Oh et Je. Schnitzer, Immunoisolation of caveolae with high affinity antibody binding to the oligomeric caveolin cage - Toward understanding the basis of purification, J BIOL CHEM, 274(33), 1999, pp. 23144-23154

Authors: Liu, J Schnitzer, JE
Citation: J. Liu et Je. Schnitzer, Analysis of lipids in caveolae, METH MOL B, 116, 1999, pp. 61-72

Authors: Rizzo, V McIntosh, DP Oh, P Schnitzer, JE
Citation: V. Rizzo et al., In situ flow activates endothelial nitric oxide synthase in luminal caveolae of endothelium with rapid caveolin dissociation and calmodulin association, J BIOL CHEM, 273(52), 1998, pp. 34724-34729
Risultati: 1-7 |