Paradies H H
Märkische Fachhochschule, Department of Biotechnology and Physical Chemistry, Iserlohn, West Germany.
J Pharm Sci. 1989 Mar;78(3):230-4. doi: 10.1002/jps.2600780312.
Aqueous solutions of tyrocidine B, iodoacetyltyrocidine B, and diiodotyrocidine B in 40% H2O:60% ethanol (w/w) were investigated by analytical ultracentrifugation, light scattering, and small-angle X-ray scattering techniques. A reasonable hydrodynamic description of the aggregates of molecular weight 28,600 is a rod with a length of 170 A and a diameter of 30 A; this description is consistent with the X-ray scattering data. Over a broad range of concentrations, inelastic light scattering measurements and small-angle X-ray scattering experiments provide the same hydrodynamic values (e.g., Stokes radii and frictional ratios). The positions of the iodines were resolved and found at a radius (R) of 16 A. So, the iodine-iodine distance across the cross section is 34 A, indicating that labeled tyrocidine B is not affected during the aggregational process.
采用分析超速离心、光散射和小角X射线散射技术,对短杆菌酪肽B、碘乙酰短杆菌酪肽B和二碘短杆菌酪肽B在40%水:60%乙醇(重量/重量)中的水溶液进行了研究。对分子量为28,600的聚集体进行合理的流体动力学描述是:一根长度为170埃、直径为30埃的棒;该描述与X射线散射数据一致。在很宽的浓度范围内,非弹性光散射测量和小角X射线散射实验提供了相同的流体动力学值(例如,斯托克斯半径和摩擦比)。碘的位置已确定,位于半径(R)为16埃处。因此,横截面上碘-碘的距离为34埃,这表明标记的短杆菌酪肽B在聚集过程中未受影响。