Ericson J U, Björk G R
J Bacteriol. 1986 Jun;166(3):1013-21. doi: 10.1128/jb.166.3.1013-1021.1986.
A strain of Salmonella typhimurium LT2 was isolated, which harbors a mutation acting as an antisuppressor toward an amber suppressor derivative, supF30, of tRNATyr1. The mutant is deficient in cis-2-methylthioribosylzeatin[N6-(4-hydroxyisopentenyl)-2-me thylthioadenosine, ms2io6A], which is a modification normally present next to the anticodon (position 37) in tRNA reading codons starting with uridine. The gene miaA, defective in the mutant, is located close to and counterclockwise of the purA gene at 96 min on the chromosomal map of S. typhimurium with the gene order mutL miaA purA. Growth rate of the mutant was reduced 20 to 50%, and the effect was more pronounced in media supporting fast growth. Translational chain elongation rate at 37 degrees C was reduced from 16 amino acids per s in the wild-type cell to 11 amino acids per s in the miaA1 mutant in the four different growth media tested. The cellular yield in limiting glucose, glycerol, or succinate medium was reduced for the miaAI mutant compared with wild-type cells, with 49, 41, and 57% reductions, respectively. The miaAI mutation renders the cell more sensitive or resistant toward several amino acid analogs, suggesting that the deficiency in ms2io6A influences the regulation of several amino acid biosynthetic operons. We suggest that tRNAPhe, lacking ms2io6A, translates a UUU codon in the early histidine leader sequence with lowered efficiency, leading to repression of the his operon.
分离出了一株鼠伤寒沙门氏菌LT2,它携带一种突变,该突变对tRNATyr1的琥珀抑制子衍生物supF30起反抑制作用。该突变体缺乏顺式-2-甲基硫代核糖基玉米素[N6-(4-羟基异戊烯基)-2-甲基硫代腺苷,ms2io6A],这是一种通常存在于以尿苷开头的密码子的tRNA反密码子(第37位)旁边的修饰。突变体中缺陷的miaA基因位于鼠伤寒沙门氏菌染色体图谱上96分钟处,靠近purA基因且在其逆时针方向,基因顺序为mutL miaA purA。突变体的生长速率降低了20%至50%,在支持快速生长的培养基中这种影响更为明显。在测试的四种不同生长培养基中,37℃时的翻译链延伸速率从野生型细胞中的每秒16个氨基酸降至miaA1突变体中的每秒11个氨基酸。与野生型细胞相比,miaAI突变体在限制葡萄糖、甘油或琥珀酸盐培养基中的细胞产量降低,分别降低了49%、41%和57%。miaAI突变使细胞对几种氨基酸类似物更敏感或更具抗性,这表明ms2io6A的缺乏影响了几种氨基酸生物合成操纵子的调控。我们认为,缺乏ms2io6A的tRNAPhe以较低的效率翻译早期组氨酸前导序列中的UUU密码子,从而导致his操纵子的抑制。