Bae Y M, Stauffer G V
Department of Microbiology, University of Iowa, Iowa City 52242.
J Bacteriol. 1991 Jun;173(11):3382-8. doi: 10.1128/jb.173.11.3382-3388.1991.
It was previously reported that transcription of the Rhizobium meliloti trpE(G) gene starts at the adenine residue of the AUG codon of the leader peptide coding sequence (trpL), suggesting that translation of the trpL sequence starts without the Shine-Dalgarno sequence. We constructed mutations replacing the AUG codon of the trpL sequence with AAG or ACG. These mutations reduced the expression of a trpL'-'lacZ fusion gene to 0.1 and 0.2% of the wild-type level, respectively, indicating that the AUG codon is the translation initiation codon for the trpL coding sequence. In addition, these mutations, as well as a mutation converting the eighth codon (UCG) of the trpL sequence to UGA, abolished regulation by attenuation when introduced upstream of the tandem tryptophan codons in a trpE'-'lacZ fusion. Mutations affecting the stability of the probable antiterminator and terminator secondary structures in trpL mRNA were also constructed. Studies using these mutations indicate that the attenuator of R. meliloti functions in a way analogous to that of the Escherichia coli trp attenuator.
先前有报道称,苜蓿根瘤菌trpE(G)基因的转录起始于前导肽编码序列(trpL)的AUG密码子的腺嘌呤残基,这表明trpL序列的翻译起始时没有Shine-Dalgarno序列。我们构建了将trpL序列的AUG密码子替换为AAG或ACG的突变。这些突变分别将trpL'-'lacZ融合基因的表达降低至野生型水平的0.1%和0.2%,表明AUG密码子是trpL编码序列的翻译起始密码子。此外,当这些突变以及将trpL序列的第八个密码子(UCG)转换为UGA的突变引入trpE'-'lacZ融合基因中串联色氨酸密码子的上游时,衰减调节作用消失。还构建了影响trpL mRNA中可能的抗终止子和终止子二级结构稳定性的突变。使用这些突变进行的研究表明,苜蓿根瘤菌的衰减子的作用方式与大肠杆菌trp衰减子类似。