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蜂毒肽对肌浆网膜中脂蛋白相互作用的影响。

Effects of melittin on lipid-protein interactions in sarcoplasmic reticulum membranes.

作者信息

Mahaney J E, Kleinschmidt J, Marsh D, Thomas D D

机构信息

Department of Biochemistry, University of Minnesota Medical School, Minneapolis 55455.

出版信息

Biophys J. 1992 Dec;63(6):1513-22. doi: 10.1016/S0006-3495(92)81736-8.

Abstract

To investigate the physical mechanism by which melittin inhibits Ca-adenosine triphosphatase (ATPase) activity in sarcoplasmic reticulum (SR) membranes, we have used electron paramagnetic resonance spectroscopy to probe the effect of melittin on lipid-protein interactions in SR. Previous studies have shown that melittin substantially restricts the rotational mobility of the Ca-ATPase but only slightly decreases the average lipid hydrocarbon chain fluidity in SR. Therefore, in the present study, we ask whether melittin has a preferential effect on Ca-ATPase boundary lipids, i.e., the annular shell of motionally restricted lipid that surrounds the protein. Paramagnetic derivatives of stearic acid and phosphatidylcholine, spin-labeled at C-14, were incorporated into SR membranes. The electronic paramagnetic resonance spectra of these probes contained two components, corresponding to motionally restricted and motionally fluid lipids, that were analyzed by spectral subtraction. The addition of increasing amounts of melittin, to the level of 10 mol melittin/mol Ca-ATPase, progressively increased the fraction of restricted lipids and increased the hyperfine splitting of both components in the composite spectra, indicating that melittin decreases the hydrocarbon chain rotational mobility for both the fluid and restricted populations of lipids. No further effects were observed above a level of 10 mol melittin/mol Ca-ATPase. In the spectra from control and melittin-containing samples, the fraction of restricted lipids decreased significantly with increasing temperature. The effect of melittin was similar to that of decreased temperature, i.e., each spectrum obtained in the presence of melittin (10:1) was nearly identical to the spectrum obtained without melittin at a temperature approximately 5 degrees C lower. The results suggest that the principal effect of melittin on SR membranes is to induce protein aggregation and this in turn, augmented by direct binding of melittin to the lipid, is responsible for the observed decreases in lipid mobility. Protein aggregation is concluded to be the main cause of inactivation of the Ca-ATPase by melittin, with possible modulation also by the decrease in mobility of the boundary layer lipids.

摘要

为了研究蜂毒肽抑制肌浆网(SR)膜中钙 - 三磷酸腺苷酶(ATP酶)活性的物理机制,我们使用电子顺磁共振光谱来探究蜂毒肽对SR中脂 - 蛋白相互作用的影响。先前的研究表明,蜂毒肽显著限制了钙ATP酶的旋转流动性,但仅略微降低了SR中平均脂质烃链的流动性。因此,在本研究中,我们探讨蜂毒肽是否对钙ATP酶边界脂质有优先作用,即围绕蛋白质的运动受限脂质的环形壳层。将在C - 14位自旋标记的硬脂酸和磷脂酰胆碱的顺磁性衍生物掺入SR膜中。这些探针的电子顺磁共振光谱包含两个成分,分别对应运动受限和运动灵活的脂质,通过光谱减法进行分析。添加越来越多的蜂毒肽,达到每摩尔钙ATP酶10摩尔蜂毒肽的水平时,受限脂质的比例逐渐增加,并且复合光谱中两个成分的超精细分裂增加,这表明蜂毒肽降低了流体和受限脂质群体中烃链的旋转流动性。在每摩尔钙ATP酶10摩尔蜂毒肽的水平以上未观察到进一步的影响。在对照和含蜂毒肽样品的光谱中,受限脂质的比例随温度升高而显著降低。蜂毒肽的作用与温度降低的作用相似,即存在蜂毒肽(10:1)时获得的每个光谱几乎与在低约5摄氏度的温度下无蜂毒肽时获得的光谱相同。结果表明,蜂毒肽对SR膜的主要作用是诱导蛋白质聚集,而这又因蜂毒肽与脂质的直接结合而增强,导致观察到的脂质流动性降低。得出结论,蛋白质聚集是蜂毒肽使钙ATP酶失活的主要原因,边界层脂质流动性的降低也可能起到调节作用。

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