Nisin-like biosynthetic gene clusters are widely distributed across microbiomes.

IF 4.7 1区 生物学 Q1 MICROBIOLOGY
mBio Pub Date : 2025-10-08 Epub Date: 2025-09-10 DOI:10.1128/mbio.01545-25
David Hourigan, Des Field, Ellen Murray, Ivan Sugrue, Paula M O'Connor, Colin Hill, R Paul Ross
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引用次数: 0

Abstract

Bacteriocins are antimicrobial peptides/proteins that can have narrow or broad inhibitory spectra and remarkable potency against clinically relevant pathogens. One such bacteriocin that is extensively used in the food industry and with potential for biotherapeutic application is the post-translationally modified peptide, nisin. Recent studies have shown the impact of nisin on the gastrointestinal microbiome, but relatively little is known of how abundant nisin production is in nature, the breadth of existing variants, and their antimicrobial potency. Whether or not nisin production and immunity are widespread in gut microbiomes could be a deciding factor in determining the suitability of nisin as a prospective therapeutic for human and/or animal infections. Here, we used publicly available data sets to determine the presence of widespread and diverse nisin biosynthetic gene clusters (nBGCs) across the biosphere. We show that 30% of these nBGCs are predicted to be located on mobile genetic elements, with some found in pathogenic bacteria. Furthermore, we highlight evidence of horizontal gene transfer of nBGCs between genera, including Streptococcus suis, Enterococcus hirae, and Staphylococcus aureus. In all, we describe 107 novel nisin-like peptides. Five representatives were heterologously expressed and all exhibited antimicrobial activity. We further characterized nisin VP, a novel natural nisin variant produced by Velocimicrobium porci isolated from the porcine gut. The peptide has a completely novel hinge region "AIQ" not detected in other nisin variants to date. While nisin VP could be induced by nisin A, the latter could not be induced by nisin VP.IMPORTANCEOur research reveals the heretofore underappreciated presence of diverse and widespread nisin-like biosynthetic gene clusters in microbiomes across the globe. Notably, different clusters share similar biosynthetic machinery but differ in sequence, suggesting gene transfer and adaptation. We identify >100 new nisin-like variants, including several in species not previously known to produce nisin. This emphasizes the widespread dissemination of nisin-like gene clusters and the diversity of novel core peptides with biotherapeutic potential. These findings point to a role for nisin in microbial competition in microbiomes. We heterologously expressed nine nisin variants, five of which are completely novel peptides, using the nisin A biosynthetic machinery and confirmed that all exhibited antimicrobial activity.

类nisin生物合成基因簇广泛分布于微生物群中。
细菌素是一种抗菌肽/蛋白质,可以具有狭窄或广泛的抑制光谱,对临床相关病原体具有显着的效力。其中一种广泛用于食品工业并具有生物治疗应用潜力的细菌素是翻译后修饰肽,nisin。最近的研究已经显示了nisin对胃肠道微生物组的影响,但相对而言,人们对自然界中nisin的产量有多丰富、现有变体的广度以及它们的抗菌效力知之甚少。nisin的产生和免疫是否在肠道微生物群中广泛存在,可能是决定nisin是否适合作为人类和/或动物感染的前瞻性治疗方法的决定性因素。在这里,我们使用公开可用的数据集来确定整个生物圈中广泛和多样化的nisin生物合成基因簇(nBGCs)的存在。我们发现,这些nBGCs中有30%预计位于可移动的遗传元件上,其中一些位于致病菌中。此外,我们强调了nBGCs在属间水平基因转移的证据,包括猪链球菌、人感染肠球菌和金黄色葡萄球菌。总之,我们描述了107种新的乳清蛋白样肽。5个菌株均具有异源表达活性。我们进一步对nisin VP进行了表征,这是一种从猪肠道分离的猪弧菌产生的新型天然nisin变体。该肽具有一个全新的铰链区域“AIQ”,迄今为止未在其他nisin变体中检测到。nisin A能诱导nisin VP,而nisin VP不能诱导后者。我们的研究揭示了迄今为止在全球微生物组中存在的多样性和广泛的乳清蛋白样生物合成基因簇未被充分认识。值得注意的是,不同的集群共享相似的生物合成机制,但序列不同,表明基因转移和适应。我们发现了100种新的乳酸链球菌素样变异,包括一些以前不知道产生乳酸链球菌素的物种。这强调了nisin样基因簇的广泛传播和具有生物治疗潜力的新型核心肽的多样性。这些发现指出了nisin在微生物组的微生物竞争中的作用。我们利用nisin A生物合成机制异源表达了9个nisin变体,其中5个是全新的肽,并证实所有变体都具有抗菌活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
mBio
mBio MICROBIOLOGY-
CiteScore
10.50
自引率
3.10%
发文量
762
审稿时长
1 months
期刊介绍: mBio® is ASM''s first broad-scope, online-only, open access journal. mBio offers streamlined review and publication of the best research in microbiology and allied fields.
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