首页> 美国卫生研究院文献>Journal of Bacteriology >Molecular characterization of the Escherichia coli enterobactin cistron entF and coupled expression of entF and the fes gene.
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Molecular characterization of the Escherichia coli enterobactin cistron entF and coupled expression of entF and the fes gene.

机译:大肠杆菌肠抑素顺反子entF的分子表征以及entF和fes基因的偶联表达。

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摘要

The Escherichia coli entF gene, which encodes the serine-activating enzyme involved in enterobactin synthesis, has been localized to a 4.7-kilobase-pair DNA fragment inserted in the vector pBR328. This recombinant molecule, pITS32, restored the ability of an entF mutant to grow on low-iron medium and to produce enterobactin. Examination of its translation products by minicell and electrophoretic analyses revealed a protein of approximately 160,000 daltons, which we identified as the EntF protein. A small DNA segment from pITS32 containing the translational start site for entF allowed the low constitutive expression of beta-galactosidase when cloned (pITS301) upstream of the lacZ structural gene in the vector pMC1403. In contrast, a clone (pITS312) containing the identical entF-lacZ fusion and a larger region upstream of entF including the entire fes gene and extending into the fepA gene (whose transcription is in the opposite direction relative to entF) expressed beta-galactosidase in high yet inducible amounts in response to fluctuations in the metabolic iron concentration. Transposon insertion mutations in the fes gene but not an insertion near the 5' region of fepA in pITS312 reduced this high inducible expression to the low constitutive level seen for pITS301. These observations are most readily explained by the presence of a regulatory region located upstream of fes which mediates the iron-regulated expression of a transcript that includes the fes and entF genes.
机译:大肠杆菌entF基因(编码参与肠杆菌素合成的丝氨酸激活酶)已定位于插入载体pBR328中的4.7碱基对DNA片段。该重组分子pITS32恢复了entF突变体在低铁培养基上生长并产生肠杆菌素的能力。通过微细胞分析和电泳分析检查其翻译产物,发现一种蛋白质约为160,000道尔顿,我们将其鉴定为EntF蛋白。当在载体pMC1403中lacZ结构基因上游克隆(pITS301)时,来自pITS32的一个小DNA片段包含entF的翻译起始位点,使得β-半乳糖苷酶的组成型表达较低。相反,含有相同entF-lacZ融合体和entF上游较大区域(包括整个fes基因)并延伸到fepA基因(其转录方向与entF相反)的克隆(pITS312)在其中表达了β-半乳糖苷酶。响应代谢铁浓度的波动而产生高而可诱导的量。 fes基因中的转座子插入突变而不是pITS312中fepA 5'区域附近的插入将这种高诱导型表达降低到pITS301所见的低组成水平。这些观察最容易由位于fes上游的调节区的存在来解释,该调节区介导包括fes和entF基因的转录物的铁调节表达。

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