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利用2H核磁共振光谱法研究莱氏无胆甾原体A株的膜厚度和分子排列。

Membrane thickness and molecular ordering in Acholeplasma laidlawii strain A studied by 2H NMR spectroscopy.

作者信息

Thurmond R L, Niemi A R, Lindblom G, Wieslander A, Rilfors L

机构信息

Department of Physical Chemistry, Umeå University, Sweden.

出版信息

Biochemistry. 1994 Nov 15;33(45):13178-88. doi: 10.1021/bi00249a004.

Abstract

Since Acholeplasma laidlawii can be restricted to incorporating fatty acids from the growth medium into its membrane lipids, it is possible to study the effects of the length of the acyl chains on the properties of the membrane of the organism. A. laidlawii strain A-EF22 was grown with mixtures of one perdeuterated saturated fatty acid and one monounsaturated fatty acid. The average length () of the acyl chains in the membrane lipids varied from 14.6 to 19.9, and the degree of unsaturation ranged from 21 to 79 mol %. 2H nuclear magnetic resonance (NMR) spectra were recorded on whole cells, on intact membranes, and on lipids extracted from these membranes. It was found that the NMR spectra for all three cases were very similar, yielding deuterium quadrupolar splittings typical for the lamellar liquid-crystalline phase (L alpha) found in model membrane systems. The use of a perdeuterated acyl chain as a reporter molecule allowed for the calculation of order parameters averaged over the entire system. These measurements yielded a wide range of average order parameters varying from 0.136 to 0.186 for the membranes and from 0.137 to 0.181 for the extracted lipids. From the order parameters the average acyl chain length can be calculated, which is related to the average membrane thickness. This value ranged from 23.2 to 30.6 A. When either the order or the membrane thickness of the intact membranes was compared to that of the extracted lipids, only slight or even undetectable differences were found. This implies that the proteins associated with the membranes do not have any large effect on the overall packing of the membrane lipids, even though the membrane thickness varied by approximately 8 A over the series studied. A decrease in the ordering of the acyl chains was observed when the length of the acyl chains incorporated from the growth medium was increased in either the membranes or the extracted lipids. This decrease correlated with the decrease in the fraction of monoglucosyldiacylglycerol (MGlcDAG) found in the membrane. Since both the average order and the membrane thickness varied, it is proposed that by changing the mole fraction of MGlcDAG the organism regulates either the membrane curvature energy or the permeability, both of which are related to lipid packing in the bilayer.

摘要

由于莱氏无胆甾原体能够被限制将生长培养基中的脂肪酸整合到其膜脂中,因此有可能研究酰基链长度对该生物体膜性质的影响。莱氏无胆甾原体A-EF22菌株在一种全氘代饱和脂肪酸和一种单不饱和脂肪酸的混合物中生长。膜脂中酰基链的平均长度()在14.6至19.9之间变化,不饱和度在21至79摩尔%之间。对全细胞、完整膜以及从这些膜中提取的脂质记录了2H核磁共振(NMR)光谱。发现所有这三种情况的NMR光谱非常相似,产生了模型膜系统中发现的层状液晶相(Lα)典型的氘四极分裂。使用全氘代酰基链作为报告分子能够计算整个系统的平均序参数。这些测量得出膜的平均序参数范围很广,从0.136到0.186,提取的脂质的平均序参数从0.137到0.181。从序参数可以计算出平均酰基链长度,其与平均膜厚度相关。该值在23.2至30.6埃之间。当将完整膜的序或膜厚度与提取的脂质的序或膜厚度进行比较时,仅发现轻微甚至无法检测到的差异。这意味着与膜相关的蛋白质对膜脂的整体堆积没有任何大的影响,尽管在所研究的系列中膜厚度变化了约8埃。当从生长培养基中掺入的酰基链长度在膜或提取的脂质中增加时,观察到酰基链的有序性降低。这种降低与膜中发现的单葡萄糖二酰甘油(MGlcDAG)分数的降低相关。由于平均序和膜厚度都发生了变化,因此提出通过改变MGlcDAG的摩尔分数,该生物体调节膜曲率能或通透性,这两者都与双层中的脂质堆积有关。

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