首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Fast Diffusion of Very Long Chain Saturated Fatty Acids across a Bilayer Membrane and Their Rapid Extraction by Cyclodextrins
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Fast Diffusion of Very Long Chain Saturated Fatty Acids across a Bilayer Membrane and Their Rapid Extraction by Cyclodextrins

机译:超长链饱和脂肪酸在双层膜中的快速扩散及其通过环糊精的快速提取

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摘要

Abnormalities in the transport of saturated very long chain fatty acids (VLCFA; >C18:0) contribute to their toxic levels in peroxisomal disorders of fatty acid metabolism, such as adrenoleukodystrophy and adrenomyeloneuropathy. We previously showed that VLCFA desorb much slower than normal dietary fatty acids from both albumin and protein-free lipid bilayers. The important step of transbilayer movement (flip-flop) was not measured directly as a consequence of this very slow desorption from donors, and the extremely low aqueous solubility of VLCFA precludes addition of unbound VLCFA to lipid membranes. We have overcome these limitations using methyl-β-cyclodextrin to solubilize VLCFA for rapid delivery to “acceptor” phosphatidylcholine vesicles (small and large unilamellar) and to cells. VLCFA binding was monitored in real time with the fluorescent probe fluorescein-labeled phosphatidylethanolamine in the outer membrane leaflet, and entrapped pyranine was used to detect flip-flop across the membrane. The upper limit of the rate of flip-flop across the membrane was independent of temperature and media viscosity and was similar for model raft and non-raft membranes as well as living cells. We further showed that cyclodextrins can extract VLCFA rapidly (within seconds) from vesicles and cells, which have implications for the mechanism and potential alternative approaches to treat adrenoleukodystrophy. Because VLCFA diffuse through the lipid bilayer, proteins may not be required for their transport across the peroxisomal membrane.
机译:饱和超长链脂肪酸(VLCFA;> C18:0)的运输异常在脂肪酸代谢的过氧化物酶体紊乱(例如肾上腺皮质营养不良和肾上腺皮质神经病)中导致其毒性水平。我们以前表明,VLCFA从白蛋白和不含蛋白质的脂质双层中解吸的速度比正常饮食中的脂肪酸慢得多。由于从供体中非常缓慢的解吸,未直接测量跨双层运动的重要步骤(触发器),并且VLCFA的极低的水溶性使得无法将未结合的VLCFA添加到脂质膜中。我们已经克服了使用甲基-β-环糊精溶解VLCFA以便快速递送到“受体”磷脂酰胆碱囊泡(小和大单层)和细胞中的这些限制。用荧光探针荧光素标记的磷脂酰乙醇胺在外膜小叶中实时监测VLCFA结合,并使用捕获的吡喃氨酸检测跨膜的触发器。跨膜翻转速率的上限与温度和介质粘度无关,并且对于模型筏膜和非筏膜以及活细胞是相似的。我们进一步表明,环糊精可以从囊泡和细胞中快速(几秒钟内)提取VLCFA,这对治疗肾上腺皮质营养不良的机制和潜在的替代方法具有重要意义。由于VLCFA通过脂质双层扩散,因此蛋白质可能不需要通过过氧化物酶体膜的转运。

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