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对纯化的莫哈韦毒素与大鼠脑突触体膜相互作用的电子自旋共振自旋标记研究。

An electron-spin-resonance spin-label study of the interaction of purified Mojave toxin with synaptosomal membranes from rat brain.

作者信息

Harris J, Power T J, Bieber A L, Watts A

出版信息

Eur J Biochem. 1983 Apr 5;131(3):559-65. doi: 10.1111/j.1432-1033.1983.tb07299.x.

Abstract

The structural properties of isolated purified rat brain synaptosomal membranes, both in the presence and absence of purified active toxin of the Mojave snake Crotalus scutulatus scutulatus, were studied by spin-label electron spin resonance techniques. The spectra from eight different positional isomers of nitroxide-labelled stearic acids, a rigid steroid androstanol, and a spin-labelled phosphatidylcholine intercalated into the synaptosomal membranes, were obtained as a function of temperature from 4-40 degrees C. The flexibility gradient (from spin-label order parameters) and polarity profile (from isotropic splitting factors) across the synaptosomal membranes, was characteristic for lipid bilayers. The nitroxide spin-labelled steroid, androstanol, intercalated into the synaptosomal membrane, revealed the abrupt onset of rapid cooperative rotation about the long axis of the molecule at 12 degrees C showing that the lipid molecules are rotating rapidly around their long axes at physiological temperatures. The presence of the Mojave toxin affected the synaptosomal membrane in a complex manner, depending upon the temperature and the position of the nitroxide label on the alkyl chain of the stearic acid probe. Mojave toxin exerted little effect on the flexibility gradient of the synaptosomal membrane at 20 degrees C, a temperature at which the acyl chain labels detected a structural change in the membranes. At temperatures lower than 20 degrees C, the Mojave toxin produced a change in the flexibility gradient of the synaptosomal membrane which indicated an increased disordering in the upper region of the membrane and a concomitant increased ordering of the acyl chains in the deeper regions of the membrane. At temperatures higher than 20 degrees C, the order profile of the synaptosomal membrane was shifted by the presence of the Mojave toxin in a manner which indicated that the outer parts of the membrane were more rigid and the inner regions more fluid, than in controls. A cross-over point for the perturbation occurred at C8-9, which is about 12-14 A into the membrane. This is the approximate depth of the hydrophobic pocket shown in pancreatic phospholipase A2 [Drenth et al. (1976) Nature (Lond.) 264, 373-377], a protein likely to be homologous to the basic subunit of the toxin. At all temperatures, rotational lipid motion was inhibited by the toxin as indicated by the steroid probe. The electron spin-resonance spin-label results are interpreted in terms of the partial penetration of the basic subunit of the intact toxin into the membrane, disordering the ordered chains at low temperature and ordering the disordered chains at physiological temperatures. The purified individual toxin subunits did not perturb the membrane lipids at physiological temperatures implying that both subunits must be associated for activity of the toxin which is confirmed by toxicity studies.

摘要

运用自旋标记电子自旋共振技术,研究了分离纯化的大鼠脑突触体膜在存在和不存在莫哈韦响尾蛇(Crotalus scutulatus scutulatus)纯化活性毒素的情况下的结构特性。获得了插入突触体膜中的八种不同位置异构体的氮氧化物标记硬脂酸、刚性甾体雄甾烷醇和自旋标记磷脂酰胆碱的光谱,该光谱是温度在4至40摄氏度范围内的函数。突触体膜上的柔韧性梯度(来自自旋标记序参量)和极性分布(来自各向同性分裂因子)是脂质双层的特征。插入突触体膜的氮氧化物自旋标记甾体雄甾烷醇在12摄氏度时显示出围绕分子长轴的快速协同旋转突然开始,这表明脂质分子在生理温度下围绕其长轴快速旋转。莫哈韦毒素的存在以复杂的方式影响突触体膜,这取决于温度以及硬脂酸探针烷基链上氮氧化物标记的位置。莫哈韦毒素在20摄氏度时对突触体膜的柔韧性梯度影响很小,在该温度下酰基链标记检测到膜中的结构变化。在低于20摄氏度的温度下,莫哈韦毒素使突触体膜的柔韧性梯度发生变化,这表明膜的上部区域无序增加,而膜较深区域的酰基链有序性随之增加。在高于20摄氏度的温度下,莫哈韦毒素的存在使突触体膜的有序分布发生偏移,其方式表明膜的外部部分更刚性,内部区域更具流动性,与对照相比。扰动的交叉点出现在C8 - 9处,约在膜内12 - 14埃处。这大约是胰腺磷脂酶A2 [德伦思等人(1976年),《自然》(伦敦)264, 373 - 377] 中所示疏水口袋的深度,该蛋白质可能与毒素的基本亚基同源。如甾体探针所示,在所有温度下,毒素均抑制脂质的旋转运动。电子自旋共振自旋标记结果被解释为完整毒素的基本亚基部分穿透到膜中,在低温下使有序链无序,在生理温度下使无序链有序。纯化的单个毒素亚基在生理温度下不会扰动膜脂质,这意味着两个亚基必须结合才能发挥毒素的活性,毒性研究证实了这一点。

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