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The Phenyltetraene Lysophospholipid Analog PTE-ET-18-OMe as a Fluorescent Anisotropy Probe of Liquid Ordered Membrane Domains (Lipid Rafts) and Ceramide-Rich Membrane Domains

机译:苯基四烯溶血磷脂类似物PTE-ET-18-OMe作为液体有序膜结构域(脂筏)和富含神经酰胺的膜结构域的荧光各向异性探针。

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摘要

The conjugated phenyltetraene PTE-ET-18-OMe (all-(E)-1-O-(15’-Phenylpentadeca-8’,10’,12’,14’-tetraenyl)-2-O-methyl-rac-glycero-3-phosphocholine), is a recently developed fluorescent lysophospholipid analog of edelfosine, (Quesada et al. (2004) J. Med. Chem. 47, 5333–5335). We investigated the use of this analog as a probe of membrane structure. PTE-ET-18-OMe was found to have several properties that are favorable for fluorescence anisotropy (polarization) experiments in membranes, including low fluorescence in water and moderately strong association with lipid bilayers. PTE-ET-18-OMe has absorbance and fluorescence properties similar to those of diphenylhexatriene (DPH) probes, with about as large a difference between its fluorescence anisotropy in liquid disordered (Ld) and ordered states (gel and Lo) as observed for DPH. Also like DPH, PTE-ET-18-OMe has a moderate affinity for both gel state ordered domains and Lo state ordered domains (rafts). However, unlike fluorescent sterols or DPH (Megha and London (2004) J. Biol. Chem. 279, 9997–10004), PTE-ET-18-OMe is not displaced from ordered domains by ceramide. Also unlike DPH, PTE-ET-18-OMe shows only slow exchange between the inner and outer leaflets of membrane bilayers, and can thus be used to examine anisotropy of an individual leaflet of a lipid bilayer. Since PTE-ET-18-OMe is a zwitterionic molecule, it should not be as influenced by electrostatic interactions as are other probes that do not cross the lipid bilayer but have a net charge. We conclude that PTE-ET-18-OMe has some unique properties that should make it a useful fluorescence probe of membrane structure.
机译:共轭苯基四烯PTE-ET-18-OMe(全-(E)-1-O-(15'-苯基戊基8-8,10',12',14'-四烯基)-2-O-甲基-rac- glycero-3-phosphocholine(甘油-3-磷酸胆碱),是最近开发的依德福星的荧光溶血磷脂类似物(Quesada et al。(2004)J. Med。Chem。47,5333-5335)。我们调查了这种类似物作为膜结构探针的用途。已发现PTE-ET-18-OMe具有有利于膜中荧光各向异性(极化)实验的几种特性,包括水中的低荧光和与脂质双层的适度强结合。 PTE-ET-18-OMe具有与二苯基己三烯(DPH)探针相似的吸收和荧光性质,在液体无序(Ld)和有序状态(凝胶和Lo)中的荧光各向异性与DPH所观察到的差不多。与DPH一样,PTE-ET-18-OMe对凝胶状态有序域和Lo状态有序域(筏)都具有中等亲和力。但是,与荧光固醇或DPH不同(Megha和London(2004)J. Biol。Chem。279,9997–10004),PTE-ET-18-OMe不会被神经酰胺从有序域中置换出来。还与DPH不同,PTE-ET-18-OMe仅在膜双层的内部和外部小叶之间显示缓慢交换,因此可用于检查脂质双层的单个小叶的各向异性。由于PTE-ET-18-OMe是两性离子分子,因此它不应像不穿过脂质双层但具有净电荷的其他探针一样受到静电相互作用的影响。我们得出的结论是,PTE-ET-18-OMe具有一些独特的特性,应该使其成为有用的膜结构荧光探针。

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