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重组烟碱型乙酰胆碱受体膜中酰基链运动的电子自旋共振研究。

Electron spin resonance studies of acyl chain motion in reconstituted nicotinic acetylcholine receptor membranes.

作者信息

Raines D E, Wu G, Dalton L A, Miller K W

机构信息

Department of Anesthesia, Massachusetts General Hospital, Boston 02114, USA.

出版信息

Biophys J. 1995 Aug;69(2):498-505. doi: 10.1016/S0006-3495(95)79923-4.

Abstract

The electron spin resonance spectra of spin-label positional isomers of stearic acid (n-SASL) incorporated into nicotinic acetylcholine receptors (nAcChoR) reconstituted into dioleoylphosphatidylcholine (DOPC) were deconvoluted into bilayer- and protein-associated components by subtraction under conditions of slow exchange. The selectivity of n-SASL (n = 6, 9, 12, and 14) for the lipid-protein interface of the nAcChoR was threefold greater than that of DOPC and independent of the spin label position. The temperature at which exchange became apparent as judged from lineshape broadening of the mobile lipid component spectrum was dependent upon the position of the spin-label moiety; near the bilayer center, exchange broadening occurred at lower temperatures than it did closer to the lipid headgroup. This suggests that the lipid headgroup region of boundary lipids is relatively fixed, whereas its acyl chain whips on and off the protein with increasing frequency near the bilayer center. Motions on the microsecond time scale were examined by microwave power saturation. Each n-SASL saturated more readily when incorporated into vesicles containing the nAcChoR than when in pure DOPC liposomes. Therefore, lipid mobility is perturbed by the nAcChoR on the microsecond time scale with an apparent magnitude that is relatively modest, probably due to exchange on this time scale.

摘要

掺入到重构于二油酰磷脂酰胆碱(DOPC)中的烟碱型乙酰胆碱受体(nAcChoR)中的硬脂酸自旋标记位置异构体(n-SASL)的电子自旋共振光谱,在缓慢交换条件下通过减法被解卷积为双层相关和蛋白质相关组分。n-SASL(n = 6、9、12和14)对nAcChoR脂质-蛋白质界面的选择性比DOPC高三倍,且与自旋标记位置无关。从可移动脂质组分光谱的线形展宽判断,交换变得明显时的温度取决于自旋标记部分的位置;在双层中心附近,交换展宽在比靠近脂质头部基团更低的温度下发生。这表明边界脂质的脂质头部基团区域相对固定,而其酰基链在双层中心附近以越来越高的频率在蛋白质上摆动和脱离。通过微波功率饱和研究了微秒时间尺度上的运动。当掺入含有nAcChoR的囊泡中时,每种n-SASL比在纯DOPC脂质体中更容易饱和。因此,在微秒时间尺度上,脂质流动性受到nAcChoR的干扰,其明显程度相对适中,可能是由于在这个时间尺度上的交换。

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