首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Cholesterol affects spectrin-phospholipid interactions in a manner different from changes resulting from alterations in membrane fluidity due to fatty acyl chain composition
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Cholesterol affects spectrin-phospholipid interactions in a manner different from changes resulting from alterations in membrane fluidity due to fatty acyl chain composition

机译:胆固醇以不同于脂酰基链组成引起的膜流动性变化所引起的变化的方式影响血影蛋白与磷脂的相互作用

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摘要

We previously showed that erythrocyte and brain spectrins bind phospholipid vesicles and monolayers prepared from phosphatidylethanolamine and phosphatidylserine and their mixtures with phosphatidylcholine (Review: A.F. Sikorski, B. Hanus-Lorenz, A. Jezierski, A. R. Dluzewski, Interaction of membrane skeletal proteins with membrane lipid domain, Acta Biochim. Polon. 47 (2000) 565). Here, we show how changes in the fluidity of the phospholipid monolayer affect spectrin-phospholipid interaction. The presence of up to 10%-20% cholesterol in the PE/PC monolayer facilitates the penetration of the monolayer by both types of spectrin. For monolayers constructed from mixtures of PI/PC and cholesterol, the effect of spectrins was characterised by the presence of two maxima (at 5 and 30% cholesterol) of surface pressure for erythroid spectrin, and a single maximum (at 20% cholesterol) for brain spectrin. The binding assay results indicated a small but easily detectable decrease in the affinity of erythrocyte spectrin for FAT-liposomes prepared from a PE/PC mixture containing cholesterol, and a 2- to 5-fold increase in maximal binding capacity (B-max) depending on the cholesterol content. On the other hand, the results from experiments with a monolayer constructed from homogenous synthetic phospholipids indicated an increase in Delta pi change with the increase in the fatty acyl chain length of the phospholipids used to prepare the monolayer. This was confirmed by the results of a pelleting experiment. Adding spectrins into the subphase of raft-like monolayers constructed from DOPC, SM and cholesterol (1/1/1) induced an increase in surface pressure. The Delta pi change values were, however, much smaller than those observed in the case of a natural PEW (6/4) monolayer. An increased binding capacity for spectrins of liposomes prepared from a "raft-like" mixture of lipids could also be concluded from the pelleting assay. In conclusion, we suggest that the effect of membrane lipid fluidity on spectrin-phospholipid interactions is not simple but depends on how it is regulated, i.e., by cholesterol content or by the chemical structure of the membrane lipids. (c) 2005 Elsevier B.V. All rights reserved.
机译:先前我们显示红细胞和脑光谱结合磷脂囊泡和由磷脂酰乙醇胺和磷脂酰丝氨酸及其与磷脂酰胆碱的混合物制备的单层膜(综述:AF Sikorski,B.领域,Acta Biochim.Polon.47(2000)565)。在这里,我们显示了磷脂单层流动性的变化如何影响血影蛋白-磷脂相互作用。 PE / PC单层中存在高达10%-20%的胆固醇有助于两种类型的血影蛋白渗透单层。对于由PI / PC和胆固醇的混合物构成的单层膜,血影蛋白的作用的特征是存在两个最大的类胡萝卜素血影蛋白表面压力(在5%和30%的胆固醇水平下)和一个最大的血浆压力(在20%胆固醇水平)。脑血影蛋白。结合测定结果表明,红血球蛋白对由含胆固醇的PE / PC混合物制得的FAT-脂质体的亲和力小幅下降,但很容易检测到,最大结合能力(B-max)增加了2至5倍对胆固醇的含量。另一方面,由均质合成磷脂构成的单层的实验结果表明,Δtpi变化随用于制备单层的磷脂的脂肪酰基链长度的增加而增加。造粒实验的结果证实了这一点。将光谱添加到由DOPC,SM和胆固醇(1/1/1)构成的筏状单层的亚相中会引起表面压力的增加。但是,Δpi变化值远小于在自然PEW(6/4)单层情况下观察到的值。由沉淀的“筏状”脂质混合物制备的脂质体对光谱蛋白的结合能力也可以增加。总之,我们认为膜脂质流动性对血影蛋白-磷脂相互作用的影响并不简单,而是取决于它是如何被调节的,即胆固醇含量或膜脂质的化学结构。 (c)2005 Elsevier B.V.保留所有权利。

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