Kliber J S, Hui Bon Hoa G, Grunberg-Manago M, Pardo D, Rosset R
Nucleic Acids Res. 1978 Jan;5(1):271-84. doi: 10.1093/nar/5.1.271.
Turbidimetric and potentiometric techniques were applied to the analysis of an EryR mutant. Results show that in the mutant, the 30S subunits are drastically altered, as indicated by a higher Mg2+ requirement for subunit association and by an important difference in the titratable groups. Replacement of parental 50S by mutant 50S subunits does not decrease the association capacity with 30S parental subunits, but a structural difference is detected in the mutant 50S with potentiometric measurements. The mutation results in decreased ribosomal in vitro activities at 22 degrees C including lowered polyphenylalanine synthesis, drastic altered initiation step and the loss of erythromycin binding to the ribosomes. The results extend previous observation of a gene eryC part in the maturation of both subunits.
采用比浊法和电位分析法对EryR突变体进行分析。结果表明,在该突变体中,30S亚基发生了显著改变,这表现为亚基缔合对Mg2+的需求更高,以及可滴定基团存在重要差异。用突变体50S亚基取代亲本50S亚基不会降低与30S亲本亚基的缔合能力,但通过电位测量发现在突变体50S中存在结构差异。该突变导致核糖体在22℃时的体外活性降低,包括聚苯丙氨酸合成降低、起始步骤显著改变以及红霉素与核糖体的结合丧失。这些结果扩展了先前关于eryC基因在两个亚基成熟过程中作用的观察。