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红细胞膜整合蛋白带3在二肉豆蔻酰磷脂酰胆碱重构囊泡中的旋转流动性及细胞骨架外周蛋白结合的影响

Rotational mobility of an erythrocyte membrane integral protein band 3 in dimyristoylphosphatidylcholine reconstituted vesicles and effect of binding of cytoskeletal peripheral proteins.

作者信息

Sakaki T, Tsuji A, Chang C H, Ohnishi S

出版信息

Biochemistry. 1982 May 11;21(10):2366-72. doi: 10.1021/bi00539a014.

Abstract

Band 3 protein was isolated from human erythrocyte membranes, purified, and reconstituted into a well-defined phospholipid bilayer matrix (dimyristoylphosphatidylcholine). The preparation yielded uniform single-bilayered vesicles of the diameter 40--80 nm. The rotational motion of band 3 was studied by saturation transfer electron spin resonance (ESR) spectroscopy of covalently attached maleimide spin-labels. The rotational mobility changed in response to the host lipid phase transition. The rotational correlation time was in a range from 73 (37 degrees C) to 94 microseconds (26 degrees C) in the fluid phase and from 240 (15 degrees C) to 420 microseconds (5 degrees C) in the solid phase. The motion was analyzed based on the anisotropic rotation of band 3 in the reconstituted vesicles. To obtain information on the rotational diffusion constant around the axis parallel to the membrane normal, we made an attempt to measure the angle between the spin-label magnetic axis and the membrane normal. The result gave 3.9 x 10(4) s-1 at 37 degrees C as a rough estimate for the diffusion constant. This is compatible to anisotropic rotation of a cylinder of radius 3.3 nm in a two-dimensional matrix with inner viscosity 2 P and inner thickness 4 nm. The cytoskeletal peripheral proteins caused a definite increase in the rotational correlation time (from 73 to 180 microseconds at 37 degrees C, for example). The restriction of the rotational mobility was shown to be due to the ankyrin-linked interaction between band 3 and spectrin-actin-band 4.1 proteins in the reconstituted membranes.

摘要

带3蛋白从人红细胞膜中分离、纯化,并重构到明确的磷脂双层基质(二肉豆蔻酰磷脂酰胆碱)中。制备得到直径为40 - 80 nm的均匀单层囊泡。通过共价连接的马来酰亚胺自旋标记的饱和转移电子自旋共振(ESR)光谱研究带3的旋转运动。旋转迁移率随主体脂质相变而变化。在液相中,旋转相关时间在73(37℃)至94微秒(26℃)范围内,在固相中为240(15℃)至420微秒(5℃)。基于重构囊泡中带3的各向异性旋转对运动进行了分析。为了获得平行于膜法线轴的旋转扩散常数的信息,我们尝试测量自旋标记磁轴与膜法线之间的夹角。结果得出在37℃时扩散常数的粗略估计值为3.9×10⁴ s⁻¹。这与半径为3.3 nm的圆柱体在二维基质中具有2 P的内粘度和4 nm的内厚度时的各向异性旋转相符。细胞骨架外周蛋白导致旋转相关时间有一定增加(例如,在37℃时从73微秒增加到180微秒)。旋转迁移率的限制表明是由于重构膜中带3与血影蛋白 - 肌动蛋白 - 带4.1蛋白之间的锚蛋白连接相互作用。

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