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A cryptic proline permease in Salmonella typhimurium

机译:沙门氏菌血硫尿的神秘脯氨酸越野

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Summary: Wild-type Salmonella typhimurium expresses three proline transport systems: a high-affinity proline transport system encoded by the putP gene, and two glycine betaine transport systems with a lower affinity for proline encoded by the proP and proU genes. Although proline uptake by the ProP and ProU transport systems is sufficient to supplement a proline auxotroph, it is not efficient enough to allow proline utilization as a sole source of carbon or nitrogen. Thus, the PutP transport system is required for utilization of proline as a carbon or nitrogen source. In this study, an overexpression suppressor, designated proY, which allows proline utilization in a putP genetic background and does not require the function of any of the known proline transport systems, was cloned and characterized. The suppressor gene, designated proY, maps at 8 min on the S. typhimurium linkage map, distant from any of the other characterized proline transport genes. The DNA sequence of the proY gene predicts that it encodes a hydrophobic integral membrane protein, with strong similarity to a family of amino acid transporters. The suppressor phenotype requires either a multicopy clone of the proY+ gene or both a single copy of the proY+ gene and a proZ mutation. These results indicate that the proY gene is the structural gene for a cryptic proline transporter that is silent unless overexpressed on a multicopy plasmid or activated by a proZ mutation.
机译:发明内容:野生型沙门氏菌表达了三种脯氨酸运输系统:由PUTP基因编码的高亲和力脯氨酸输送系统,以及两个甘氨酸甜菜碱输送系统,对PROU基因编码的脯氨酸具有较低的亲和力。虽然脯氨酸由道具和Prou传输系统吸收足以补充脯氨酸滋巢营养,但它不足以让脯氨酸使用作为唯一的碳或氮源。因此,普陀运输系统需要利用脯氨酸作为碳或氮源。在该研究中,克隆和表征了克隆遗传背景中的过表达抑制剂,其允许脯氨酸遗传背景下脯氨酸利用,并且不需要任何已知的脯氨酸输送系统的功能。抑制基因,指定普洛,在S.​​ Typhimurium Linkaggage地图上以8分钟的地图,远离任何其他特征的脯氨酸输送基因。 PROY基因的DNA序列预测其编码疏水性整体膜蛋白,与氨基酸转运蛋白家族具有强烈相似性。抑制剂表型需要PROY +基因的多拷贝克隆或PROY +基因的单拷贝和PROZ突变。这些结果表明,除非在多拷贝质粒上过度抑制或由PROZ突变激活,否则PROY基因是静态脯氨酸转运蛋白的结构基因。

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