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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Interaction of free fatty acids with phospholipid bilayers
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Interaction of free fatty acids with phospholipid bilayers

机译:游离脂肪酸与磷脂双层的相互作用

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摘要

The partition of free fatty acids (FFA) to egg-phosphatidylcholine (egg-PC) and egg-phosphatidylethanolamine (egg-PE) vesicles was studied. Upon the addition of FFA to the suspension of vesicles, the pH of the aqueous phase changed depending on the length and saturation of the FFA hydrocarbon chain, as well as on the vesicle composition. The medium pH decreased faster if FFA was added to egg-PE as compared to egg-PC vesicles. The fluorescent free fatty acid indicator (ADIFAB) was used to measure the amount of FFA remaining in the aqueous phase. Most of the FFA added to the suspension of egg-PE vesicles remained in the aqueous phase, whereas in the presence of egg-PC vesicles the FFA partitioned preferentially into the lipid phase. The amount of FFA incorporated into the lipid bilayers was estimated by measuring the changes of pH at the lipid bilayer surface, using fluorescenn-PE. At high surface concentrations of FFA, decreasing pH at the bilayer surface caused the protonation of FFA, and raised the pK of FFA at the bilayer surface from 5 to about 7. The partition of FFA in egg-PE vesicles was an order of magnitude lower than that in egg-PC vesicles. The incorporation amount was determined more by the molecular packing than by the nature of lipid headgroups, because steroylcaprioyl-PE, which preferred the bilayer structure, behaved ;more like egg-PC than egg-PE. Understanding FFA partition characteristics would help to interpret the hydrolysis measurements of phospholipids, and to explain many biological activities of FFA.
机译:研究了游离脂肪酸(FFA)在卵磷脂酰胆碱(egg-PC)和卵磷脂酰乙醇胺(egg-PE)囊泡中的分配。在将FFA添加到囊泡悬浮液中时,水相的pH根据FFA烃链的长度和饱和度以及囊泡组成而改变。与鸡蛋-PC囊泡相比,如果将FFA添加到鸡蛋-PE中,培养基的pH下降速度更快。荧光游离脂肪酸指示剂(ADIFAB)用于测量残留在水相中的FFA量。添加到卵PE囊泡悬浮液中的大多数FFA保留在水相中,而在存在卵PC囊泡的情况下,FFA优先分配到脂质相中。使用荧光素-PE通过测量脂质双层表面上pH的变化来估计掺入脂质双层中的FFA的量。在高FFA表面浓度下,双层表面pH降低会导致FFA质子化,并将双层表面FFA的pK从5提高到大约7。在鸡蛋-PE囊泡中FFA的分配降低了一个数量级比蛋PC囊泡中的要高。掺入量更多地取决于分子堆积而不是脂质头基的性质,这是因为优选双层结构的硬脂酸癸二酰-PE表现得更像蛋-PC而不是蛋-PE。了解FFA的分配特性将有助于解释磷脂的水解测量结果,并有助于解释FFA的许多生物学活性。

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