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大鼠肝脏起始因子eIF-3的结构。流体动力学和电子显微镜研究。

Structure of initiation factor eIF-3 from rat liver. Hydrodynamic and electron microscopic investigations.

作者信息

Behlke J, Bommer U A, Lutsch G, Henske A, Bielka H

出版信息

Eur J Biochem. 1986 Jun 16;157(3):523-30. doi: 10.1111/j.1432-1033.1986.tb09698.x.

Abstract

On the basis of hydrodynamic, electron microscopic and biochemical investigations a new model of the structure of initiation factor eIF-3 is proposed. From sedimentation and diffusion coefficients of 16.35 S and 2.13 X 10(-7) cm2/s, respectively, as well as from sedimentation equilibrium measurements, a molecular mass of about 650 kDa was determined for isolated eIF-3. This is in agreement with molecular mass estimations by sodium dodecyl sulphate gel electrophoresis. A partial specific volume of 0.723 cm3/g was determined by means of the amino acid composition and the specific volume increments of the amino acids. From this value and from the molecular mass, a volume of 780 nm3 was calculated for eIF-3. In electron micrographs of isolated eIF-3, images with triangular profiles and side lengths of 14 nm, 16 nm, and 17 nm have been observed. Taking into account the calculated volume and considering the triangular image as one face of the particle, it is suggested that eIF-3 has the shape of a flat triangular prism with a height of about 7 nm and the above-mentioned side-lengths. This model is in agreement with results of electron microscopic investigations of eIF-3 in native small ribosomal subunits [Lutsch, G., Benndorf, R., Westermann, P., Bommer, U.-A. & Bielka, H. (1986) Eur. J. Cell Biol. 40/2, in press]. The high frictional ratio of about 1.7 also supports eIF-3 to be rather of a flat than of a globular shape.

摘要

基于流体动力学、电子显微镜和生物化学研究,提出了起始因子eIF - 3的新结构模型。分离得到的eIF - 3的沉降系数和扩散系数分别为16.35 S和2.13×10⁻⁷ cm²/s,通过沉降平衡测量确定其分子量约为650 kDa。这与十二烷基硫酸钠凝胶电泳的分子量估计结果一致。根据氨基酸组成和氨基酸的比容增量确定其偏比容为0.723 cm³/g。由此值和分子量计算出eIF - 3的体积为780 nm³。在分离的eIF - 3的电子显微照片中,观察到了三角形轮廓且边长分别为14 nm、16 nm和17 nm的图像。考虑到计算出的体积并将三角形图像视为颗粒的一个面,推测eIF - 3具有扁平三棱柱的形状,高度约为7 nm,边长如上所述。该模型与天然小核糖体亚基中eIF - 3的电子显微镜研究结果一致[Lutsch, G., Benndorf, R., Westermann, P., Bommer, U.-A. & Bielka, H. (1986) Eur. J. Cell Biol. 40/2,待发表]。约1.7的高摩擦比也支持eIF - 3更呈扁平状而非球状。

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