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Vibrio cholerae VibF Is Required for Vibriobactin Synthesis and Is a Member of the Family of Nonribosomal Peptide Synthetases

机译:霍乱弧菌VibF是合成弧菌杆菌所必需的,并且是非核糖体肽合成酶家族的成员

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摘要

A 7.5-kbp fragment of chromosomal DNA downstream of the Vibrio cholerae vibriobactin outer membrane receptor, viuA, and the vibriobactin utilization gene, viuB, was recovered from a Sau3A lambda library of O395 chromosomal DNA. By analogy with the genetic organization of the Escherichia coli enterobactin gene cluster, in which the enterobactin biosynthetic and transport genes lie adjacent to the enterobactin outer membrane receptor, fepA, and the utilization gene, fes, the cloned DNA was examined for the ability to restore siderophore synthesis to E. coli ent mutants. Cross-feeding studies demonstrated that an E. coli entF mutant complemented with the cloned DNA regained the ability to synthesize enterobactin and to grow in low-iron medium. Sequence analysis of the cloned chromosomal DNA revealed an open reading frame downstream of viuB which encoded a deduced protein of greater than 2,158 amino acids, homologous to Yersinia sp. HMWP2, Vibrio anguillarum AngR, and E. coli EntF. A mutant with an in-frame deletion of this gene, named vibF, was created with classical V. cholerae strain O395 by in vivo marker exchange. In cross-feeding studies, this mutant was unable to synthesize ferric vibriobactin but was able to utilize exogenous siderophore. Complementation of the mutant with a cloned vibF fragment restored vibriobactin synthesis to normal. The expression of the vibF promoter was found to be negatively regulated by iron at the transcriptional level, under the control of the V. cholerae fur gene. Expression of vibF was not autoregulatory and neither affected nor was affected by the expression of irgA or viuA. The promoter of vibF was located by primer extension and was found to contain a dyad symmetric nucleotide sequence highly homologous to the E. coli Fur binding consensus sequence. A footprint of purified V. cholerae Fur on the vibF promoter, overlapping the Fur binding consensus sequence, was observed using DNase I footprinting. The protein product of vibF is homologous to the multifunctional nonribosomal protein synthetases and is necessary for the biosynthesis of vibriobactin.
机译:从O395染色体DNA的Sau3A lambda文库中回收了霍乱弧菌弧菌外膜受体viuA和弧菌素利用基因viuB下游的7.5kbp染色体DNA片段。与大肠杆菌肠球菌素基因簇的遗传组织类似,其中肠球菌素的生物合成和转运基因与肠球菌素外膜受体fepA和利用基因fes相邻,检查了克隆的DNA的恢复能力铁载体合成为大肠杆菌ent突变体。交叉喂养研究表明,大肠杆菌entF突变体与克隆的DNA互补,重新获得了合成肠杆菌素并在低铁培养基中生长的能力。克隆的染色体DNA的序列分析揭示了在viuB下游的开放阅读框,该阅读框编码与耶尔森菌属菌种同源的大于2,158个氨基酸的推导蛋白。 HMWP2,鳗弧菌AngR和大肠杆菌EntF。通过体内标记交换,用经典霍乱弧菌菌株O395产生了一个在框内缺失该基因的突变体,称为vibF。在交叉喂养研究中,该突变体无法合成铁弧菌素,但能够利用外源铁载体。突变体与克隆的vibF片段的互补使弧菌素合成恢复正常。发现在霍乱弧菌毛皮基因的控制下,vibF启动子的表达在转录水平上受到铁的负调控。 vibF的表达不是自动调节的,irgA或viuA的表达均不受其影响。通过引物延伸来定位vibF的启动子,发现其包含与大肠杆菌Fur结合共有序列高度同源的dyad对称核苷酸序列。使用DNase I足迹观察到了纯化的霍乱弧菌Fur在vibF启动子上的足迹,与Fur结合共有序列重叠。 vibF的蛋白质产物与多功能非核糖体蛋白合成酶同源,是生物合成弧菌素所必需的。

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