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新型IIb类微菌素对革兰氏阴性ESKAPE菌和植物病原菌具有活性。

Novel class IIb microcins show activity against Gram-negative ESKAPE and plant pathogens.

作者信息

Mortzfeld Benedikt M, Bhattarai Shakti K, Bucci Vanni

机构信息

Program in Microbiome Dynamics, University of Massachusetts Chan Medical School, Worcester, United States.

Department of Microbiology, University of Massachusetts Chan Medical School, Worcester, United States.

出版信息

Elife. 2024 Dec 11;13:RP102912. doi: 10.7554/eLife.102912.

Abstract

Interspecies interactions involving direct competition bacteriocin production play a vital role in shaping ecological dynamics within microbial ecosystems. For instance, the ribosomally produced siderophore bacteriocins, known as class IIb microcins, affect the colonization of host-associated pathogenic species. Notably, to date, only five of these antimicrobials have been identified, all derived from specific and strains. We hypothesized that class IIb microcin production extends beyond these specific compounds and organisms. With a customized informatics-driven approach, screening bacterial genomes in public databases with BLAST and manual curation, we have discovered 12 previously unknown class IIb microcins in seven additional species, encompassing phytopathogens and environmental isolates. We introduce three novel clades of microcins (MccW, MccX, and MccZ), while also identifying eight new variants of the five known class IIb microcins. To validate their antimicrobial potential, we heterologously expressed these microcins in and demonstrated efficacy against a variety of bacterial isolates, including plant pathogens from the genera , and . Two newly discovered microcins exhibit activity against Gram-negative ESKAPE pathogens, or providing the first evidence that class IIb microcins can target bacteria outside of the family. This study underscores that class IIb microcin genes are more prevalent in the microbial world than previously recognized and that synthetic hybrid microcins can be a viable tool to target clinically relevant drug-resistant pathogens. Our findings hold significant promise for the development of innovative engineered live biotherapeutic products tailored to combat these resilient bacteria.

摘要

涉及直接竞争和细菌素产生的种间相互作用在塑造微生物生态系统内的生态动态中起着至关重要的作用。例如,核糖体产生的铁载体细菌素,即IIb类微菌素,会影响宿主相关致病物种的定殖。值得注意的是,迄今为止,仅鉴定出其中五种抗菌物质,均源自特定的菌株。我们推测IIb类微菌素的产生不仅限于这些特定的化合物和生物体。通过定制的信息学驱动方法,利用BLAST在公共数据库中筛选细菌基因组并进行人工筛选,我们在另外七个物种中发现了12种先前未知的IIb类微菌素,包括植物病原体和环境分离株。我们引入了三个新的微菌素进化枝(MccW、MccX和MccZ),同时还鉴定出了五种已知IIb类微菌素的八个新变体。为了验证它们的抗菌潜力,我们在大肠杆菌中异源表达了这些微菌素,并证明其对多种细菌分离株有效,包括来自欧文氏菌属、假单胞菌属和黄单胞菌属的植物病原体。两种新发现的微菌素对革兰氏阴性ESKAPE病原体(粪肠球菌或肺炎克雷伯菌)具有活性,这首次证明IIb类微菌素可以靶向肠杆菌科以外的细菌。这项研究强调,IIb类微菌素基因在微生物世界中比以前认为的更为普遍,并且合成杂交微菌素可以成为靶向临床相关耐药病原体的可行工具。我们的发现为开发针对这些顽强细菌的创新工程化活生物治疗产品带来了巨大希望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bcf3/11634061/461ceb5a4f7f/elife-102912-fig1.jpg

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