从放线菌群中发现和合成无领导细菌素。

IF 2.7 3区 生物学 Q3 MICROBIOLOGY Journal of Bacteriology Pub Date : 2024-11-21 Epub Date: 2024-10-15 DOI:10.1128/jb.00298-24
David Hourigan, Felipe Miceli de Farias, Paula M O'Connor, Colin Hill, R Paul Ross
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引用次数: 0

摘要

无首领细菌素是一类独特的细菌素,在翻译后具有抗菌活性,而且很少有抗药性记录。金黄色葡萄球菌素 A53 和乳酸菌素 Q 被认为是研究最深入的两种无首领细菌素。在此,我们利用硅基因组挖掘技术在 GenBank 和 MGnify 中搜索新型金霉素 A53 样无首领细菌素。我们在 430 个基因组中发现了 757 个核心肽,其中有 75 个物种目前还没有特征性的无首领细菌素生产。其中包括来自链霉菌属(sp. NBC_00237)和农球菌属(sp. SL85)的含有细菌素基因簇(BGCs)的推定新物种。迄今为止,所有特征化的无首领细菌素都是在芽孢杆菌门中发现的,但本研究在放线菌门中发现了 97 个核心肽。这个门的成员传统上与抗生素的生产有关,例如链霉菌属(Streptomyces)。在细菌素生产方面,放线菌门(Actinomycetota)是一个探索不足的门类,迄今为止还没有发现有特征的无领导细菌素生产。我们分别从放线菌门成员 Arcanobacterium sp.和 Arachnia sp.中化学合成了两种新型无头绪细菌素 arcanocin 和 arachnicin,并验证了它们的抗菌活性。这些肽分别在人类肠道(PRJNA485056)和口腔(PRJEB43277)微生物组中编码。这项研究强调了放线菌属在无领导细菌素生产方面的生物合成潜力,并描述了在阿卡诺杆菌属和蛛形纲属中编码的第一种抗菌肽。重要意义鉴于抗菌素耐药性的发生率越来越高,细菌素作为当前抗生素的替代品正受到越来越多的关注。无头绪细菌素由于能够合成活性肽且耐药性较低,被认为是具有商业吸引力的细菌素亚类。因此,在这项工作中,我们挖掘了可公开获得的数据,以确定无首领细菌素在细菌领域中的广泛性和多样性。放线菌属(Actinomycetota)因其抗生素生产者而闻名,但缺乏描述和特征化的细菌素,事实证明它是无首领细菌素的丰富来源--共有 97 种。化学合成了两种此类肽,即 arcanocin 和 arachnicin,它们具有抗菌活性。这些细菌素可能是新型抗菌素的新来源,有助于开发未来的替代抗菌素,并突出表明放线菌属是一种尚未充分开发的细菌素肽资源。
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Discovery and synthesis of leaderless bacteriocins from the Actinomycetota.

Leaderless bacteriocins are a unique class of bacteriocins that possess antimicrobial activity after translation and have few cases of documented resistance. Aureocin A53 and lacticin Q are considered two of the most well-studied leaderless bacteriocins. Here, we used in silico genome mining to search for novel aureocin A53-like leaderless bacteriocins in GenBank and MGnify. We identified 757 core peptides across 430 genomes with 75 species found currently without characterized leaderless bacteriocin production. These include putative novel species containing bacteriocin gene clusters (BGCs) from the genera Streptomyces (sp. NBC_00237) and Agrococcus (sp. SL85). To date, all characterized leaderless bacteriocins have been found within the phylum Bacillota, but this study identified 97 core peptides within the phylum Actinomycetota. Members of this phylum are traditionally associated with the production of antibiotics, such is the case with the genus Streptomyces. Actinomycetota is an underexplored phylum in terms of bacteriocin production with no characterized leaderless bacteriocin production to date. The two novel leaderless bacteriocins arcanocin and arachnicin from Actinomycetota members Arcanobacterium sp. and Arachnia sp., respectively, were chemically synthesized and antimicrobial activity was verified. These peptides were encoded in human gut (PRJNA485056) and oral (PRJEB43277) microbiomes, respectively. This research highlights the biosynthetic potential of Actinomycetota in terms of leaderless bacteriocin production and describes the first antimicrobial peptides encoded in the genera Arcanobacterium and Arachnia.IMPORTANCEBacteriocins are gathering attention as alternatives to current antibiotics given the increasing incidence of antimicrobial resistance. Leaderless bacteriocins are considered a commercially attractive subclass of bacteriocins due to the ability to synthesize active peptide and low levels of documented resistance. Therefore, in this work, we mined publicly available data to determine how widespread and diverse leaderless bacteriocins are within the domain of bacteria. Actinomycetota, known for its antibiotic producers but lacking described and characterized bacteriocins, proved to be a rich source of leaderless bacteriocins-97 in total. Two such peptides, arcanocin and arachnicin, were chemically synthesized and have antimicrobial activity. These bacteriocins may provide a novel source of novel antimicrobials that could aid in the development of future alternative antimicrobials and highlight that the Actinomycetota are an underexplored resource of bacteriocin peptides.

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来源期刊
Journal of Bacteriology
Journal of Bacteriology 生物-微生物学
CiteScore
6.10
自引率
9.40%
发文量
324
审稿时长
1.3 months
期刊介绍: The Journal of Bacteriology (JB) publishes research articles that probe fundamental processes in bacteria, archaea and their viruses, and the molecular mechanisms by which they interact with each other and with their hosts and their environments.
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