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硫酸脑苷脂长酰基链物种的指状脂质双层。脂肪酸自旋标记研究。

Interdigitated lipid bilayers of long acyl chain species of cerebroside sulfate. A fatty acid spin label study.

作者信息

Boggs J M, Koshy K M, Rangaraj G

机构信息

Department of Biochemistry, Hospital for Sick Children, Toronto, Ontario, Canada.

出版信息

Biochim Biophys Acta. 1988 Mar 3;938(3):373-85. doi: 10.1016/0005-2736(88)90135-6.

Abstract

The metastable phase behavior of semi-synthetic species of cerebroside sulfate (CBS), with hydroxy and non-hydroxy fatty acids from 16 to 26 carbons in length, was compared in Li+ and K+ using differential scanning calorimetry. The structure of the metastable and various stable phases formed in the presence of these two cations was investigated using a fatty acid spin label, 16-doxylstearate. A number of stable phases with successively higher phase transition temperatures and enthalpies occur in the presence of K+ (see the preceding paper). Li+ prevents formation of the most stable phases with the highest transition temperatures and enthalpies for all species of CBS. However, it does not prevent a transition from the metastable phase to the first stable phase of the longer chain C24 and C26 species. Furthermore, it allows C24:0h-CBS to undergo a similar transition, in contrast to a high K+ concentration, which prevents it. The spin label has anisotropic motion in the metastable gel phase formed by all species of CBS on cooling from the liquid crystalline phase. The spectra resemble those in gel phase phospholipids. The spin label is partially insoluble in the most stable phases formed by all the lipids, including the unsaturated C24:1 species, preventing further elucidation of their structure using this technique. However, the spin label is soluble in the first stable phase formed on cooling by the longer chain C24:0 and C26:0-CBS in Li+ and K+ and by C24:0h-CBS in Li+, and is motionally restricted in this phase. The motional restriction is similar to that observed in the mixed interdigitated bilayers of asymmetric species of phosphatidylcholine and fully interdigitated bilayers formed by symmetric phospholipids. It strongly suggests that the highly asymmetric long chain species of CBS form a mixed interdigitated bilayer in their first stable gel phases while the metastable phase of these and the shorter chain lipids may be partially interdigitated. The metastable phase of C24:1-CBS is more disordered suggesting that it may not be interdigitated at all. Thus the results suggest that (i) the hydroxy fatty acid inhibits but does not prevent formation of a mixed interdigitated bilayer by long chain species of CBS, (ii) an increase in non-hydroxy fatty acid chain length from 24 to 26 carbons promotes it, and (iii) a cis double bond probably prevents any form of interdigitation. These results may be relevant to the physiological and pathological roles of these structural modifications of CBS.

摘要

利用差示扫描量热法,比较了含有16至26个碳原子的羟基和非羟基脂肪酸的半合成硫酸脑苷脂(CBS)物种在Li⁺和K⁺中的亚稳相行为。使用脂肪酸自旋标记物16 - 脱氧硬脂酸研究了在这两种阳离子存在下形成的亚稳相和各种稳定相的结构。在K⁺存在下会出现许多具有相继更高相变温度和焓的稳定相(见前文)。对于所有CBS物种,Li⁺会阻止形成具有最高转变温度和焓的最稳定相。然而,它并不阻止较长链的C24和C26物种从亚稳相转变为第一个稳定相。此外,与高K⁺浓度阻止C24:0h - CBS转变不同,Li⁺允许C24:0h - CBS发生类似转变。在从液晶相冷却时,自旋标记物在由所有CBS物种形成的亚稳凝胶相中具有各向异性运动。光谱类似于凝胶相磷脂中的光谱。自旋标记物在包括不饱和C24:1物种在内的所有脂质形成的最稳定相中部分不溶,这使得无法使用该技术进一步阐明其结构。然而,自旋标记物可溶于在Li⁺和K⁺中由较长链的C24:0和C26:0 - CBS以及在Li⁺中由C24:0h - CBS冷却形成的第一个稳定相中,并且在该相中运动受到限制。这种运动限制类似于在不对称磷脂酰胆碱物种的混合交错双层和由对称磷脂形成的完全交错双层中观察到的情况。这强烈表明,CBS的高度不对称长链物种在其第一个稳定凝胶相中形成混合交错双层,而这些以及较短链脂质的亚稳相可能是部分交错的。C24:1 - CBS的亚稳相更无序,这表明它可能根本没有交错。因此,结果表明:(i)羟基脂肪酸会抑制但不会阻止CBS长链物种形成混合交错双层;(ii)非羟基脂肪酸链长度从24个碳增加到26个碳会促进这种形成;(iii)顺式双键可能会阻止任何形式的交错。这些结果可能与CBS这些结构修饰的生理和病理作用相关。

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