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Functional Reconstitution of the Olfactory Membrane: Incorporation of the Olfactory Adenylate Cyclase in Liposomes

机译:嗅膜的功能重构:嗅觉腺苷酸环化酶在脂质体中的掺入

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Chemosensory cilia isolated from the olfactory epithelium of Rana catesbeiana were solubilized with Lubrol PX in the presence of supplementary lipid, forskolin, and sodium fluoride. Subsequent removal of the detergent by adsorption onto Biobeads SM2 results in the formation of proteoliposomes that display forskolin- and GTP(gamma)S-sensitive adenylate cyclase activity. Sucrose gradient centrifugation of liposomes formed in the presence of fluorescently labeled phosphatidylcholine demonstrates association between the olfactory adenylate cyclase and the exogenously added lipid. Forskolin stimulates the enzyme in reconstituted membranes with the same potency as in native membranes (EC50 = 1-2 micromoles). However, GTP (gamma)S is 350-fold more potent in native membranes (EC50 + or - 0.5 nM) than in reconstituted membranes (EC50 = 1.4 + or - 0.3 micromoles). These studies represent a first step toward the functional reconstitution and molecular dissection of the olfactory membrane. Keywords: Smell, Ion channels, Odors, Neurochemical transmission, Olfactory nerve, Reprints. (aw)

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