Han Charles C, Serdyuk I N, Yu Hyuk
Center for Materials Science, National Bureau of Standards, Washington, DC 20234.
Department of Chemistry, University of Wisconsin, Madison, Wisconsin 53706.
J Res Natl Bur Stand (1977). 1979 Jan-Feb;84(1):1-8. doi: 10.6028/jres.084.001.
The translational diffusion coefficients of the 45S and 50S states of the large ribosomal subunit of were determined from the spectral distributions of quasielastically scattered light with a 5 mW He-Ne laser as the source. The spectral analysis was performed by directly Fourier transforming the photocurrent and fitting to double-Lorentzian profile via a non-linear regression routine. A small amount (about 1%) of strongly scattering contaminants required the double-Lorentzian profile in order to extract the diffusion coefficients of the principal components. The results are: D°, w(45S) = (1.79 ± 0.12) × 10cm/sec, and D°, w(50S) = (1.91 ± 0.06) × 10cm/sec, the latter being in accord with those reported in the literature. The transition from the 50S state to the 45S state is not attended by a change in its molecular weight if the partial specific volumes are assumed to be the same.
以一台5毫瓦的氦氖激光器作为光源,通过准弹性散射光的光谱分布测定了大核糖体亚基45S和50S状态的平移扩散系数。光谱分析是通过直接对光电流进行傅里叶变换,并通过非线性回归程序拟合双洛伦兹曲线来进行的。少量(约1%)强散射污染物需要双洛伦兹曲线来提取主要成分的扩散系数。结果为:D°,w(45S) = (1.79 ± 0.12) × 10cm/sec,D°,w(50S) = (1.91 ± 0.06) × 10cm/sec,后者与文献报道的结果一致。如果假定偏比容相同,从50S状态到45S状态的转变不会伴随着分子量的变化。