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昆虫载脂蛋白III的物理和表面性质

Physical and surface properties of insect apolipophorin III.

作者信息

Kawooya J K, Meredith S C, Wells M A, Kézdy F J, Law J H

出版信息

J Biol Chem. 1986 Oct 15;261(29):13588-91.

PMID:3759983
Abstract

Apolipophorin III (apoLp-III) from Manduca sexta has a molecular weight of 18,100. Based on its hydrodynamic properties (sedimentation and diffusion coefficients, frictional ratio, intrinsic viscosity) and its behavior during gel permeation chromatography, we concluded that apoLp-III is a prolate ellipsoid with an axial ratio of about 3. The circular dichroic spectrum of apoLp-III suggests that the protein contains approximately 50% alpha-helix. At the air-water interface, apoLp-III forms a monolayer which is gaseous at surface pressures less than or equal to 1 dyne/cm. The isotherm of this phase yields an excluded molecular area of 3800 A2/molecule (23 A2/amino acid). At a surface pressure of 22.1 dynes/cm, the monolayer undergoes a phase transition reminiscent of a first-order phase transition of pure lipids. The monolayer can be compressed in this surface pressure range to an area per molecule of 480 A2 (2.9 A2/amino acid). Since a globular protein of molecular weight 18,100 could occupy an area of only about 2000 A2 when bound to a surface, it is suggested that in the expanded state, apoLp-III must unfold on the surface, whereas in the compressed state, the molecule is oriented with its minor axis parallel to the water surface. ApoLp-III binds with high affinity (Kd = 1.9 X 10(-7)M) to both phosphatidylcholine- and diacylglycerol-coated polystyrene beads. All of these results are consistent with the proposal that apoLp-III plays a key role in increasing the capacity of the insect lipoprotein, lipophorin, to transport diacylglycerol by stabilizing the increment of lipid-water interface that results from diacylglycerol uptake.

摘要

烟草天蛾的载脂蛋白III(apoLp-III)分子量为18,100。基于其流体动力学性质(沉降和扩散系数、摩擦比、特性粘度)以及在凝胶渗透色谱中的行为,我们得出结论,apoLp-III是一个轴比约为3的长椭球体。apoLp-III的圆二色光谱表明该蛋白质含有约50%的α-螺旋。在气-水界面,apoLp-III形成单分子层,在表面压力小于或等于1达因/厘米时呈气态。该相的等温线得出的排除分子面积为3800 Ų/分子(23 Ų/氨基酸)。在表面压力为22.1达因/厘米时,单分子层经历类似于纯脂质一级相变的相变。在这个表面压力范围内,单分子层可以被压缩到每分子面积为480 Ų(2.9 Ų/氨基酸)。由于分子量为18,100的球状蛋白质结合到表面时只能占据约2000 Ų的面积,这表明在伸展状态下,apoLp-III必须在表面展开,而在压缩状态下,分子以其短轴平行于水面排列。apoLp-III以高亲和力(Kd = 1.9×10⁻⁷M)与磷脂酰胆碱和二酰基甘油包被的聚苯乙烯珠结合。所有这些结果都与以下提议一致,即apoLp-III通过稳定因摄取二酰基甘油而导致的脂质-水界面增加,在提高昆虫脂蛋白——脂载脂蛋白运输二酰基甘油的能力方面发挥关键作用。

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