Giddens Stephen R, Feng Yunjiang, Mahanty H Khris
Department of Plant and Microbial Sciences, University of Canterbury, Christchurch, New Zealand.
Mol Microbiol. 2002 Aug;45(3):769-83. doi: 10.1046/j.1365-2958.2002.03048.x.
Erwinia herbicola strain Eh1087 produces the broad-spectrum phenazine antibiotic D-alanylgriseoluteic acid (AGA). In this report, a cluster of 16 ehp (Erwinia herbicola phenazine) plasmid genes required for the production of AGA by Eh1087 is described. The extent of the gene cluster was revealed by the isolation of 82 different Eh1087 AGA- mutants, all found to possess single mini-Tn5lacZ2 insertions within a 14 kbp DNA region. Additional transposon insertions that did not affect antibiotic production by Eh1087 were created to define the boundaries of the gene cluster. The size and location of genes between these boundaries were derived from a combination of DNA sequence analyses, minicell protein analyses and the correlation between mutation position and the production of coloured AGA intermediates by many ehp mutants. Precursor-feeding and complementation experiments resulted in 15 ehp genes being assigned to one of four functional groups according to their role in the synthesis of AGA. Group 1 is required for the synthesis of the phenazine nucleus in the form of antibiotic precursor one (AP1, phenazine-1,6-dicarboxylic acid). Group 2 is responsible for conversion of AP1 to AP2, which is subsequently modified to AP3 (griseoluteic acid) and exported by the group 3 gene products. Group 4 catalyses the addition of D-alanine to AP3 to create AGA, independently of groups 1, 2 and 3. A gene that is divergently transcribed from the 15 AGA synthesis ehp genes confers resistance to AGA.
草本欧文氏菌菌株Eh1087可产生广谱吩嗪抗生素D-丙氨酰灰黄霉素酸(AGA)。在本报告中,描述了Eh1087产生AGA所需的一组16个ehp(草本欧文氏菌吩嗪)质粒基因。通过分离82个不同的Eh1087 AGA-突变体揭示了基因簇的范围,所有这些突变体均被发现在一个14 kbp的DNA区域内具有单个mini-Tn5lacZ2插入。创建了不影响Eh1087抗生素产生的其他转座子插入,以确定基因簇的边界。这些边界之间基因的大小和位置来自DNA序列分析、小细胞蛋白分析以及许多ehp突变体的突变位置与有色AGA中间体产生之间的相关性。前体喂养和互补实验导致15个ehp基因根据它们在AGA合成中的作用被分配到四个功能组之一。第1组是合成抗生素前体1(AP1,吩嗪-1,6-二羧酸)形式的吩嗪核所必需的。第2组负责将AP1转化为AP2,随后AP2被修饰为AP3(灰黄霉素酸)并由第3组基因产物输出。第4组催化将D-丙氨酸添加到AP3以产生AGA,独立于第1、2和3组。一个与15个AGA合成ehp基因反向转录的基因赋予对AGA的抗性。