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Effects of gramicidin-A on the adsorption of phospholipids to the air-water interface

机译:短杆菌肽-A对磷脂在空气-水界面的吸附作用

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Prior studies suggest that the hydrophobic surfactant proteins, SP-B and SP-C, promote adsorption of the lipids in pulmonary surfactant to an-water interface by stabilizing a negatively curved rate-limiting structure that is intermediate between bilayer vesicles and the surface film. This, air model predicts that other peptides capable of stabilizing negative curvature should also promote lipid adsorption. Previous reports have shown that under appropriate conditions, gramicidin-A (GrA) induces dioleoyl phosphatidylcholine (DOPC), but not dimyristoyl phosphatidylcholine (DMPC), to form the negatively curved hexagonal-II (H-II) phase. The Studies reported here determined if GrA would produce the same effects on adsorption of DMPC and DOPC that the hydrophobic surfactant proteins have on the surfactant lipids. Small angle X-ray scattering and P-31- nuclear magnetic resonance confirmed that at the particular conditions used to study adsorption, GrA induced DOPC to form the H-II phase, but DMPC remained lamellar. Measurements of surface tension showed that GrA in vesicles produced a general increase in the rate of adsorption for both phospholipids. When restricted to the interface, however, in preexisting films, GrA with DOPC, but not with DMPC, replicated the ability of the surfactant proteins to promote adsorption of vesicles containing only the lipids. The correlation between the structural and functional effects of GrA with the two phospholipids, and the similar effects on adsorption of GrA with DOPC and the hydrophobic surfactant proteins with the surfactant lipids fit with the model in which SP-B and SP-C facilitate adsorption by stabilizing a rate-limiting intermediate with negative curvature. (c) 2005 Elsevier B.V. All rights reserved.
机译:先前的研究表明,疏水性表面活性剂蛋白SP-B和SP-C通过稳定双层囊泡与表面膜之间的负向弯曲的限速结构来促进肺表面活性剂中的脂质吸附至水界面。该空气模型预测,其他能够稳定负曲率的肽也应促进脂质的吸附。先前的报道表明,在适当的条件下,短杆菌肽-A(GrA)会诱导二油酰基磷脂酰胆碱(DOPC),但不会诱导二肉豆蔻酰基磷脂酰胆碱(DMPC)形成负弯曲的六边形II(H-II)相。此处报道的研究确定了GrA是否会对DMPC和DOPC的吸附产生与疏水表面活性剂蛋白质对表面活性剂脂质相同的作用。小角度X射线散射和P-31核磁共振证实,在用于研究吸附的特定条件下,GrA诱导DOPC形成H-II相,但DMPC仍为层状。表面张力的测量表明,囊泡中的GrA使两种磷脂的吸附速率普遍增加。但是,当限制在界面上时,在已有的膜中,带有DOPC而不是DMPC的GrA复制了表面活性剂蛋白促进仅包含脂质的囊泡吸附的能力。 GrA与两种磷脂的结构和功能效应之间的相关性,以及DOPC对GrA的吸附和对表面活性剂脂质对疏水性表面活性剂蛋白质的吸附所产生的相似影响,均符合SP-B和SP-C促进吸附的模型。稳定具有负曲率的限速中间体。 (c)2005 Elsevier B.V.保留所有权利。

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