Johanson U, Aevarsson A, Liljas A, Hughes D
Department of Molecular Biology, Uppsala University Biomedical Centre, Sweden.
J Mol Biol. 1996 May 10;258(3):420-32. doi: 10.1006/jmbi.1996.0259.
We have previously identified 20 different fusidic acid-resistant alleles of fusA, encoding mutant forms of the ribosomal translocase EF-G. One of these, P413L, is used here as the starting point in selections for internal revertants, identifying 20 different pseudo-wild-type forms of EF-G. We have also identified two alleles of fusA previously isolated as suppressors of 4.5 S RNA deficiency. All of these mutants are analysed in terms of their effects on the structural dynamics of EF-G. Most mutation conferring fusidic acid-resistance interfere with conformational changes of EF-G, but some may be located at a possible fusidic acid binding site. Revertants of the P413L mutations restore the function of EF-G with or without affecting the level of resistance to fusidic acid. The revertant mutations probably restore the balance between the GDP and GTP conformations of EF-G off the ribosome, and most of them are located close to the interface between the G domain and domain II. The procedure for the isolation of pseudo-wild-type forms of EF-G can be used to direct evolution progressively away from the wild-type while still maintaining the essential functions of EF-G.
我们之前已经鉴定出fusA的20种不同的夫西地酸抗性等位基因,它们编码核糖体转位酶EF-G的突变形式。其中之一,P413L,在此用作筛选内部回复突变体的起点,从而鉴定出20种不同的EF-G假野生型形式。我们还鉴定出了fusA的两个等位基因,它们之前作为4.5S RNA缺陷的抑制子被分离出来。所有这些突变体都根据它们对EF-G结构动力学的影响进行了分析。大多数赋予夫西地酸抗性的突变会干扰EF-G的构象变化,但有些可能位于可能的夫西地酸结合位点。P413L突变的回复突变体恢复了EF-G的功能,无论是否影响对夫西地酸的抗性水平。回复突变可能恢复了核糖体之外的EF-G的GDP和GTP构象之间的平衡,并且它们中的大多数位于G结构域和结构域II之间的界面附近。分离EF-G假野生型形式的程序可用于逐步引导进化远离野生型,同时仍保持EF-G的基本功能。