Biblio
[369] .
2006. Serine protease signaling of epidermal permeability barrier homeostasis. J Invest Dermatol. 126:2074-86. Abstract
[341] .
2006. Effect of lipid rafts on Cb2 receptor signaling and 2-arachidonoyl-glycerol metabolism in human immune cells. J Immunol. 177:4971-80. Abstract
[393] .
2006. Negative regulation of protease-activated receptor 1-induced Src kinase activity by the association of phosphocaveolin-1 with Csk. Cell Signal. 18:1977-87. Abstract
[441] .
2006. Localization of the kappa opioid receptor in lipid rafts. J Pharmacol Exp Ther. 317:1295-306. Abstract
[423] .
2006. The active metabolite of Clopidogrel disrupts P2Y12 receptor oligomers and partitions them out of lipid rafts. Proc Natl Acad Sci U S A. 103:11069-74. Abstract
[397] .
2006. FRET imaging reveals that functional neurokinin-1 receptors are monomeric and reside in membrane microdomains of live cells. Proc Natl Acad Sci U S A. 103:2138-43. Abstract
[473] .
2006. Caveolin-1 regulates cellular trafficking and function of the glucagon-like Peptide 1 receptor.. Molecular endocrinology (Baltimore, Md.). 20(12):3400-11. Abstract
[425] .
2005. Clathrin-independent internalization of the human histamine H1-receptor in CHO-K1 cells. Br J Pharmacol. 146:612-24. Abstract
[412] .
2005. Lipid rafts are required in Galpha(i) signaling downstream of the P2Y12 receptor during ADP-mediated platelet activation. J Thromb Haemost. 3:1036-41. Abstract
[396] .
2005. Agonist-induced tyrosine phosphorylation of Gq/G11 alpha requires the intact structure of membrane domains. Biochem Biophys Res Commun. 328:526-32. Abstract
[374] .
2005. Ligand-induced partitioning of human CXCR1 chemokine receptors with lipid raft microenvironments facilitates G-protein-dependent signaling. Mol Cell Biol. 25:5752-62. Abstract
[399] .
2005. The NK1 receptor localizes to the plasma membrane microdomains, and its activation is dependent on lipid raft integrity. J Biol Chem. 280:7135-46. Abstract
[376] .
2005. Calcium sensing receptor forms complex with and is up-regulated by caveolin-1 in cultured human osteosarcoma (Saos-2) cells. Exp Mol Med. 37:91-100. Abstract
[343] .
2005. Consequences of lipid raft association on G-protein-coupled receptor function. Biochem Soc Symp. :151-64. Abstract
[352] .
2004. Sphingolipid-cholesterol domains (lipid rafts) in normal human and dog thyroid follicular cells are not involved in thyrotropin receptor signaling. Endocrinology. 145:1464-72. Abstract
[443] .
2004. D1 dopamine receptor signaling involves caveolin-2 in HEK-293 cells. Kidney Int. 66:2167-80. Abstract
[468] .
2004. N-formyl peptide receptors cluster in an active raft-associated state prior to phosphorylation.. The Journal of biological chemistry. 279(43):45175-84. Abstract
[475] .
2004. Lipid raft-dependent glucagon-like peptide-2 receptor trafficking occurs independently of agonist-induced desensitization.. Molecular biology of the cell. 15(8):3673-87. Abstract
[439] .
2003. Caveolin interacts with the angiotensin II type 1 receptor during exocytic transport but not at the plasma membrane. J Biol Chem. 278:23738-46. Abstract
[414] .
2003. Self-association and raft localization of functional luteinizing hormone receptors. Biol Reprod. 69:1765-70. Abstract
[434] .
2003. Leukocyte-endothelium interaction promotes SDF-1-dependent polarization of CXCR4. J Biol Chem. 278:30302-10. Abstract

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