Tapio S, Isaksson L A
Department of Microbiology, University of Uppsala, Sweden.
Eur J Biochem. 1990 Mar 10;188(2):339-46. doi: 10.1111/j.1432-1033.1990.tb15409.x.
Two slow-growing kirromycin-resistant Escherichia coli mutants with altered EF-Tu (Ap and Aa) were studied in vivo in strains with an inactive tufB gene. Mutant form Aa was isolated as an antisuppressor of the tyrT(Su3) nonsense suppressor, as described here. Ap, the tufA gene product of strain D2216 (from A. Parmeggiani), has previously been shown to give an increased GTPase activity. The slow cellular growth rates of both EF-Tu mutants are correlated with decreased translational elongation rates. Ap and Aa significantly decrease suppression levels of both nonsense and missense suppressor tRNAs [tyrT(Su3), trpT(Su9), glyT(SuAGA/G)], but have only little or no effect on misreading by wild-type tRNAs. A particular missense suppressor, lysT(SuAAA/G), which acts by virtue of partial mischarging as the result of an alteration in the amino acid stem, is not significantly affected by the EF-Tu mutations. The combination of tufA(Aa) and a rpsD12 ribosomal mutation is lethal at room temperature and the double-mutant strain has an elevated temperature optimum (42 degrees C) for growth rate, translation rate and nonsense suppression. Our data indicate an alterated interaction between Aa and the ribosome, consistent with our in vitro results.
在tufB基因失活的菌株中,对两个生长缓慢、携带改变的EF-Tu(Ap和Aa)的抗奇霉素大肠杆菌突变体进行了体内研究。如本文所述,突变体Aa是作为tyrT(Su3)无义抑制子的反抑制子分离得到的。Ap是菌株D2216(来自A. Parmeggiani)的tufA基因产物,此前已证明其具有增强的GTPase活性。两个EF-Tu突变体的细胞生长缓慢速率与翻译延伸速率降低相关。Ap和Aa显著降低了无义抑制子和错义抑制子tRNA [tyrT(Su3)、trpT(Su9)、glyT(SuAGA/G)]的抑制水平,但对野生型tRNA的错读影响很小或没有影响。一种特定的错义抑制子lysT(SuAAA/G),由于氨基酸茎的改变导致部分错载而发挥作用,不受EF-Tu突变的显著影响。tufA(Aa)和rpsD12核糖体突变的组合在室温下是致死的,双突变菌株在生长速率、翻译速率和无义抑制方面具有升高的最适温度(42摄氏度)。我们的数据表明Aa与核糖体之间的相互作用发生了改变,这与我们的体外结果一致。