首页> 美国卫生研究院文献>Journal of Bacteriology >Translation Efficiency of Antiterminator Proteins Is a Determinant for the Difference in Glucose Repression of Two β-Glucoside Phosphotransferase System Gene Clusters in Corynebacterium glutamicum R
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Translation Efficiency of Antiterminator Proteins Is a Determinant for the Difference in Glucose Repression of Two β-Glucoside Phosphotransferase System Gene Clusters in Corynebacterium glutamicum R

机译:抗终止子蛋白的翻译效率是决定谷氨酸棒杆菌R中两个β-葡糖苷磷酸转移酶系统基因簇的葡萄糖阻抑差异的决定因素。

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摘要

Corynebacterium glutamicum R has two β-glucoside phosphoenolpyruvate, carbohydrate phosphotransferase systems (PTS) encoded by bglF and bglF2 located in the respective clusters, bglF-bglA-bglG and bglF2-bglA2-bglG2. Previously, we reported that whereas β-glucoside-dependent induction of bglF is strongly repressed by glucose, glucose repression of bglF2 is very weak. Here, we reveal the mechanism behind the different effects of glucose on the two bgl genes. Deletion of the ribonucleic antiterminator sequence and transcriptional terminator located upstream of the translation initiation codon of bglF markedly relieved the glucose repression of a bglF-lacZ fusion, indicating that glucose affects the antitermination mechanism that is responsible for the β-glucoside-dependent induction of the bglF cluster. The glucose repression of bglF mRNA was also relieved by introducing a multicopy plasmid carrying the bglG gene encoding an antiterminator of the bglF cluster. Moreover, replacement of the GUG translation initiation codon of bglG with AUG was effective in relieving the glucose repression of bglF and bglG. Inversely, expression of bglF2 and bglG2 was subject to strict glucose repression in a mutant strain in which the AUG translation initiation codon of bglG2 encoding antiterminator of the bglF2 cluster was replaced with GUG. These results suggest that the translation initiation efficiency of the antiterminator proteins, at least in part, determines whether the target genes are subject to glucose repression. We also found that bglF expression was induced by glucose in the BglG-overexpressing strains, which may be explained by the ability of BglF to transport glucose.
机译:谷氨酸棒杆菌R具有位于各自簇中的由bglF和bglF2编码的两个β-葡糖苷磷酸烯醇丙酮酸,碳水化合物磷酸转移酶系统(PTS),bglF-bglA-bglG和bglF2-bglA2-bglG2。以前,我们报道了葡萄糖会强烈抑制bglF的β-葡萄糖苷依赖性诱导作用,而bglF2的葡萄糖抑制作用却很弱。在这里,我们揭示了葡萄糖对两个bgl基因的不同作用背后的机制。位于bglF的翻译起始密码子上游的核糖核酸抗终止子序列和转录终止子的缺失显着缓解了bglF-lacZ融合蛋白的葡萄糖阻遏作用,表明葡萄糖影响了抗终止机制,该机制负责β-葡萄糖苷依赖性的BglF诱导。 bglF群集。通过引入携带编码bglF簇抗终止子的bglG基因的多拷贝质粒,也减轻了bglF mRNA的葡萄糖抑制。此外,用AUG代替bglG的GUG翻译起始密码子可有效缓解bglF和 bglG 的葡萄糖抑制。相反,在突变株中, bglF2 bglG2 的表达受到严格的葡萄糖抑制,该突变株中, bglG2 编码抗终止子的AUG翻译起始密码子 bglF2 群集已替换为GUG。这些结果表明,抗终止子蛋白的翻译起始效率至少部分地决定了靶基因是否受到葡萄糖抑制。我们还发现 bglF 表达是由BglG过表达菌株中的葡萄糖诱导的,这可以用BglF转运葡萄糖的能力来解释。

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