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Characterization of Two Seryl-tRNA Synthetases in Albomycin-Producing Streptomyces sp. Strain ATCC 700974

机译:表征产阿尔博霉素的链霉菌sp。中的两个Seryl-tRNA合成酶。应变ATCC 700974

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摘要

The Trojan horse antibiotic albomycin, produced by Streptomyces sp. strain ATCC 700974, contains a thioribosyl nucleoside moiety linked to a hydroxamate siderophore through a serine residue. The seryl nucleoside structure (SB-217452) is a potent inhibitor of seryl-tRNA synthetase (SerRS) in the pathogenic bacterium Staphylococcus aureus, with a 50% inhibitory concentration (IC50) of ∼8 nM. In the albomycin-producing Streptomyces sp., a bacterial SerRS homolog (Alb10) was found to be encoded in a biosynthetic gene cluster in addition to another serRS gene (serS1) at a different genetic locus. Alb10, named SerRS2 herein, is significantly divergent from SerRS1, which shows high homology to the housekeeping SerRS found in other Streptomyces species. We genetically and biochemically characterized the two genes and the proteins encoded. Both genes were able to complement a temperature-sensitive serS mutant of Escherichia coli and allowed growth at a nonpermissive temperature. serS2 was shown to confer albomycin resistance, with specific amino acid residues in the motif 2 signature sequences of SerRS2 playing key roles. SerRS1 and SerRS2 are comparably efficient in vitro, but the Km of serine for SerRS2 measured during tRNA aminoacylation is more than 20-fold higher than that for SerRS1. SB-217452 was also enzymatically generated and purified by two-step chromatography. Its IC50 against SerRS1 was estimated to be 10-fold lower than that against SerRS2. In contrast, both SerRSs displayed comparable inhibition kinetics for serine hydroxamate, indicating that SerRS2 was specifically resistant to SB-217452. These data suggest that mining Streptomyces genomes for duplicated aminoacyl-tRNA synthetase genes could provide a novel approach for the identification of natural products targeting aminoacyl-tRNA synthetases.
机译:链霉菌属菌种生产的特洛伊木马抗生素霉素。菌株ATCC 700974,含有通过丝氨酸残基与异羟肟酸酯铁载体连接的硫代核糖基核苷部分。丝氨酰核苷结构(SB-217452)是致病性金黄色葡萄球菌中有效的丝氨酰tRNA合成酶(SerRS)抑制剂,抑制浓度(IC50)为〜8 nM,为50%。在生产造霉素的链霉菌中,发现细菌SerRS同源物(Alb10)除了在不同遗传位点的另一个serRS基因(serS1)外,还被编码在生物合成基因簇中。 Alb10,在本文中称为SerRS2,与SerRS1明显不同,SerRS1与在其他链霉菌种中发现的管家SerRS具有高度同源性。我们在遗传和生物化学上表征了这两个基因和编码的蛋白质。这两个基因都能够补充大肠杆菌的温度敏感serS突变体,并允许其在非允许温度下生长。已显示serS2赋予阿波霉素抗性,SerRS2的基序2签名序列中的特定氨基酸残基起关键作用。 SerRS1和SerRS2在体外的效率相当,但是在tRNA氨酰化过程中测得的SerRS2的丝氨酸Km比SerRS1高20倍。 SB-217452也通过酶促生成,并通过两步色谱法纯化。据估计,针对SerRS1的IC50比针对SerRS2的IC50低10倍。相反,两种SerRS对丝氨酸异羟肟酸酯均显示出相当的抑制动力学,表明SerRS2对SB-217452具有特异性抗性。这些数据表明,挖掘链霉菌基因组以获取重复的氨酰基-tRNA合成酶基因可以为鉴定靶向氨酰基-tRNA合成酶的天然产物提供一种新方法。

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