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人中枢神经系统髓鞘碱性蛋白对脂质双层结构的影响。

Effect of basic protein from human central nervous system myelin on lipid bilayer structure.

作者信息

Boggs J M, Moscarello M A

出版信息

J Membr Biol. 1978 Feb 6;39(1):75-96. doi: 10.1007/BF01872756.

Abstract

The effect of myelin basic protein from normal human central nervous system on lipid organization has been investigated by studying model membranes containing the protein by differential scanning calorimetry or electron spin resonance spectroscopy. Basic protein was found to decrease the phase transition temperature of dipalmitoyl phosphatidylglycerol, phosphatidic acid, and phosphatidylserine. The protein had a greater effect on the freezing temperature, measured from the cooling scan, than on the melting temperature, measured from the heating scan. These results are consistent with partial penetration of parts of the protein into the hydrocarbon region of the bilayer in the liquid crystalline state and partial freezing out when the lipid has been cooled below its phase transition temperature. The effect of the protein on fatty acid chain packing was investigated by using a series of fatty acid spin labels with the nitroxide group located at different positions along the chain. If the protein has not yet penetrated, it increases the order throughout the bilayer in the gel phase, probably by decreasing the repulsion between the lipid polar head groups. Above the phase transition temperature, when parts of it are able to pentrate, it decreases the motion of the lipid fatty acid chains greatly near the polar head group region, but has little or no effect near the interior of the bilayer. Upon cooling again the protein still decreases the motion near the polar head group region but increases it greatly in the interior. Thus, the protein penetrates partway into the bilayer, distorts the packing of the lipid fatty acid chains, and prevents recrystallization, thus decreasing the phase transition temperature. The magnitude of the effect varied with the lipid and was greatest for phosphatidic acid and phosphatidylglycerol. It could be reversed upon cooling for phosphatidylglycerol but not phosphatidic acid. The protein was only observed to decrease the phase transition temperature of phosphatidylserine upon cooling. It had only a small effect on phosphatidylethanolamine and no effect on phosphatidylcholine. Thus, the protein may penetrate to a different extent into different lipids even if it binds to the polar head group region by electrostatic interactions.

摘要

通过差示扫描量热法或电子自旋共振光谱法研究含有正常人中枢神经系统髓鞘碱性蛋白的模型膜,已对该蛋白对脂质组织的影响进行了研究。发现碱性蛋白可降低二棕榈酰磷脂酰甘油、磷脂酸和磷脂酰丝氨酸的相变温度。该蛋白对冷却扫描测得的冷冻温度的影响大于对加热扫描测得的熔化温度的影响。这些结果与该蛋白部分进入液晶态双层的烃区以及脂质冷却至其相变温度以下时部分析出相一致。通过使用一系列脂肪酸自旋标记物,其氮氧化物基团位于链上不同位置,研究了该蛋白对脂肪酸链堆积的影响。如果该蛋白尚未穿透,则可能通过减少脂质极性头部基团之间的排斥力来增加凝胶相中整个双层的有序性。在相变温度以上,当它的部分能够穿透时,它会大大降低极性头部基团区域附近脂质脂肪酸链的运动,但对双层内部附近几乎没有影响或没有影响。再次冷却时,该蛋白仍然会降低极性头部基团区域附近的运动,但会大大增加内部的运动。因此,该蛋白部分穿透双层,扭曲脂质脂肪酸链的堆积,并防止重结晶,从而降低相变温度。这种影响的程度因脂质而异,对磷脂酸和磷脂酰甘油的影响最大。对于磷脂酰甘油,冷却后这种影响可以逆转,但对于磷脂酸则不能。仅在冷却时观察到该蛋白可降低磷脂酰丝氨酸的相变温度。它对磷脂酰乙醇胺只有很小的影响,对磷脂酰胆碱没有影响。因此,即使该蛋白通过静电相互作用与极性头部基团区域结合,它也可能以不同程度穿透不同的脂质。

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