Haggerty T J, Lovett S T
Department of Biology and Rosenstiel Basic Medical Sciences Research Center, Brandeis University, Waltham, Massachusetts 02254-9110, USA.
J Bacteriol. 1997 Nov;179(21):6705-13. doi: 10.1128/jb.179.21.6705-6713.1997.
A mutational change of the initiation codon to GUA was found to reduce, but not abolish, expression of the recJ gene of Escherichia coli. Specific mutations in translational initiation factor IF3 have been isolated as second-site suppressors of this GUA initiation codon mutation. One of these, infC135, with an arginine-to-proline change at amino acid 131, completely restores a wild-type phenotype to recJ GUA initiation codon mutants and acts in a semidominant fashion. The infC135 mutation increased expression of RecJ from the GUA mutant but had no effect on the normal GUG start. The infC135 mutation also abolished autoregulation of IF3 in cis and in trans. The behavior of this IF3 mutant suggests that it has specifically lost its ability to abort initiation from poor initiation codons such as GUA of recJ and the AUU of infC. Because of the impact of IF3 on recJ, a recombination and repair gene, this role of IF3 must be general and not restricted to translation genes. The dominance of infC135 suggests that the other functions of IF3, for instance its ability to bind to 30S ribosomes, must remain intact. Although the ability to discriminate among initiation codons has been lost in the infC135 mutant, translational initiation was still restricted to the normal initiation site in recJ, even in the presence of a closely juxtaposed alternative initiation codon. Because the recJ gene lacks a canonical Shine-Dalgarno sequence, other unknown features of the mRNA must serve to specify the initiation site.
研究发现,起始密码子突变为GUA会降低大肠杆菌recJ基因的表达,但不会使其完全丧失。翻译起始因子IF3中的特定突变已被分离出来,作为该GUA起始密码子突变的第二位点抑制子。其中之一,infC135,在氨基酸131处发生了精氨酸到脯氨酸的变化,能使recJ GUA起始密码子突变体完全恢复野生型表型,并以半显性方式起作用。infC135突变增加了GUA突变体中RecJ的表达,但对正常的GUG起始没有影响。infC135突变还消除了IF3的顺式和反式自调控。这种IF3突变体的行为表明,它特别丧失了从不良起始密码子(如recJ的GUA和infC的AUU)中止起始的能力。由于IF3对recJ(一个重组和修复基因)有影响,IF3的这一作用必定是普遍的,并不局限于翻译基因。infC135的显性表明IF3的其他功能,例如其与30S核糖体结合的能力,必定保持完整。尽管infC135突变体丧失了区分起始密码子的能力,但即使在存在紧密相邻的替代起始密码子的情况下,recJ中的翻译起始仍局限于正常起始位点。由于recJ基因缺乏典型的Shine-Dalgarno序列,mRNA的其他未知特征必定用于指定起始位点。