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Bases of biocontrol: Sequence predicts synthesis and mode of action of agrocin 84 the Trojan Horse antibiotic that controls crown gall

机译:生物防治的基础:序列可预测农杆菌素84(控制冠gall的特洛伊木马抗生素)的合成和作用方式

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摘要

Agrobacterium radiobacter K84, used worldwide to biocontrol crown gall disease caused by Agrobacterium tumefaciens, produces an antiagrobacterial compound called agrocin 84. We report the nucleotide sequence of pAgK84, a 44.42-kb plasmid coding for production of this disubstituted adenine nucleotide antibiotic. pAgK84 encodes 36 ORFs, 17 of which (agn) code for synthesis of or immunity to agrocin 84. Two genes, agnB2 and agnA, encode aminoacyl tRNA synthetase homologues. We have shown that the toxic moiety of agrocin 84 inhibits cellular leucyl-tRNA synthetases and AgnB2, which confers immunity to the antibiotic, is a resistant form of this enzyme. AgnA, a truncated homologue of asparaginyl tRNA synthetase could catalyze the phosphoramidate bond between a precursor of the methyl pentanamide side group and the nucleotide. We propose previously undescribed chemistry, catalyzed by AgnB1, to generate the precursor necessary for this phosphoramidate linkage. AgnC7 is related to ribonucleotide reductases and could generate the 3′-deoxyarabinose moiety of the nucleoside. Bioinformatics suggest that agnC3, agnC4, and agnC6 contribute to maturation of the methyl pentanamide, whereas agnC2 may produce the glucofuranose side group bound to the adenine ring. AgnG is related to bacterial exporters. An agnG mutant accumulated agrocin 84 intracellularly but did not export the antibiotic. pAgK84 is transmissible and encodes genes for conjugative DNA processing but lacks a type IV secretion system, suggesting that pAgK84 transfers by mobilization. By sequence analysis, the deletion engineered into pAgK1026 removed the oriT and essential tra genes, confirming the enhanced environmental safety of this modified form of pAgK84.
机译:全世界用于控制由根癌农杆菌引起的冠gall病的放射农杆菌K84,产生一种称为农杆菌84的抗农杆菌化合物。我们报道了pAgK84的核苷酸序列,pAgK84是一种编码这种双取代腺嘌呤核苷酸抗生素生产的44.42-kb质粒。 pAgK84编码36个ORF,其中17个(agn)编码农杆菌素84的合成或免疫。两个基因agnB2和agnA编码氨酰基tRNA合成酶同源物。我们已经表明,农杆菌素84的毒性部分抑制了细胞亮氨酰-tRNA合成酶,赋予抗生素免疫力的AgnB2是这种酶的抗性形式。 AgnA,一种天冬酰胺基tRNA合成酶的截短同源物,可以催化甲基戊酰胺侧基前体与核苷酸之间的氨基磷酸酯键。我们提出了以前未描述的化学,由AgnB1催化,以生成该氨基磷酸酯键所必需的前体。 AgnC7与核糖核苷酸还原酶有关,可以产生核苷的3'-脱氧阿拉伯糖部分。生物信息学表明,agnC3,agnC4和agnC6有助于甲基戊酰胺的成熟,而agnC2可能会产生与腺嘌呤环结合的葡糖呋喃糖侧基。 AgnG与细菌出口商有关。一个agnG突变体在细胞内积累了农霉素84,但没有输出抗生素。 pAgK84是可传播的,可编码用于共轭DNA处理的基因,但缺乏IV型分泌系统,这表明pAgK84是通过动员转移的。通过序列分析,改造成pAgK1026的缺失删除了oriT和必需的tra基因,证实了这种修饰形式的pAgK84的增强的环境安全性。

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