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发光杆菌的沉默操纵子编码 GTP 的前药类似物。

A Silent Operon of Photorhabdus luminescens Encodes a Prodrug Mimic of GTP.

机构信息

Antimicrobial Discovery Center, Department of Biology, Northeastern University, Boston, Massachusetts, USA.

Department of Pharmacology, University of Texas Southwestern Medical Center, Dallas, Texas, USA.

出版信息

mBio. 2022 Jun 28;13(3):e0070022. doi: 10.1128/mbio.00700-22. Epub 2022 May 16.

Abstract

With the overmining of actinomycetes for compounds acting against Gram-negative pathogens, recent efforts to discover novel antibiotics have been focused on other groups of bacteria. Teixobactin, the first antibiotic without detectable resistance that binds lipid II, comes from an uncultured , a betaproteobacterium; odilorhabdins, from , are broad-spectrum inhibitors of protein synthesis, and darobactins from target BamA, the essential chaperone of the outer membrane of Gram-negative bacteria. and are symbionts of the nematode gut microbiome and attractive producers of secondary metabolites. Only small portions of their biosynthetic gene clusters (BGC) are expressed To access their silent operons, we first separated extracts from a small library of isolates into fractions, resulting in 200-fold concentrated material, and then screened them for antimicrobial activity. This resulted in a hit with selective activity against Escherichia coli, which we identified as a novel natural product antibiotic, 3'-amino 3'-deoxyguanosine (ADG). Mutants resistant to ADG mapped to and , kinases of guanosine. Biochemical analysis shows that ADG is a prodrug that is converted into an active ADG triphosphate (ADG-TP), a mimic of GTP. ADG incorporates into a growing RNA chain, interrupting transcription, and inhibits cell division, apparently by interfering with the GTPase activity of FtsZ. Gsk of the purine salvage pathway, which is the first kinase in the sequential phosphorylation of ADG, is restricted to E. coli and closely related species, explaining the selectivity of the compound. There are probably numerous targets of ADG-TP among GTP-dependent proteins. The discovery of ADG expands our knowledge of prodrugs, which are rare among natural compounds. Drug-resistant Gram-negative bacteria have become the major problem driving the antimicrobial resistance crisis. Searching outside the overmined actinomycetes, we focused on , gut symbionts of enthomopathogenic nematodes that carry up to 40 biosynthetic gene clusters coding for secondary metabolites. Most of these are silent and do not express . To gain access to silent operons, we first fractionated supernatant from and then tested 200-fold concentrated material for activity. This resulted in the isolation of a novel antimicrobial, 3'-amino 3'-deoxyguanosine (ADG), active against E. coli. ADG is an analog of guanosine and is converted into an active ADG-TP in the cell. ADG-TP inhibits transcription and probably numerous other GTP-dependent targets, such as FtsZ. Natural product prodrugs have been uncommon; discovery of ADG broadens our knowledge of this type of antibiotic.

摘要

随着对抗革兰氏阴性病原体化合物的放线菌过度开采,最近发现新型抗生素的努力集中在其他细菌群体上。泰妙菌素是第一个没有检测到耐药性的抗生素,它与脂质 II 结合,来自未培养的β变形菌;奥多利哈丁,广谱抑制蛋白质合成的抑制剂,达罗巴丁靶向革兰氏阴性细菌外膜的 BamA,是必不可少的伴侣蛋白。 和 是线虫肠道微生物组的共生体,是次级代谢产物的有吸引力的生产者。它们的生物合成基因簇(BGC)只有很小一部分被表达出来,为了访问它们的沉默操纵子,我们首先将从小文库中分离的提取物分成几个部分,得到 200 倍浓缩的物质,然后筛选它们的抗菌活性。这导致了一种对大肠杆菌具有选择性活性的化合物,我们将其鉴定为一种新型天然产物抗生素,3'-氨基-3'-脱氧鸟苷(ADG)。对 ADG 有抗性的突变体定位在 和 ,它们是鸟苷的激酶。生化分析表明 ADG 是一种前药,可转化为活性 ADG 三磷酸(ADG-TP),是 GTP 的类似物。ADG 掺入到正在生长的 RNA 链中,中断转录,并抑制细胞分裂,显然是通过干扰 FtsZ 的 GTPase 活性。嘌呤补救途径的 Gsk,它是 ADG 顺序磷酸化的第一个激酶,仅局限于大肠杆菌和密切相关的物种,解释了该化合物的选择性。ADG-TP 可能是许多依赖 GTP 的蛋白质的靶标。ADG 的发现扩展了我们对前药的认识,前药在天然化合物中很少见。 具有抗药性的革兰氏阴性菌已成为推动抗微生物药物耐药性危机的主要问题。在过度开采的放线菌之外,我们专注于共生在昆虫病原线虫肠道中的细菌,这些线虫携带多达 40 个生物合成基因簇,编码次级代谢产物。这些基因簇中的大多数都是沉默的,不表达。为了获得沉默操纵子,我们首先对 和 进行了上清液的分级分离,然后对 200 倍浓缩的物质进行了活性测试。这导致了一种新型抗菌剂 3'-氨基-3'-脱氧鸟苷(ADG)的分离,对大肠杆菌有活性。ADG 是鸟苷的类似物,在细胞内转化为活性 ADG-TP。ADG-TP 抑制转录,可能还有许多其他依赖 GTP 的靶标,如 FtsZ。天然产物前药并不常见;ADG 的发现拓宽了我们对这种类型抗生素的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8f1/9239236/0450de782869/mbio.00700-22-f001.jpg

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