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ECC22 是一种土壤来源的细菌素产生菌,可产生 pumilarin 和一种新型的环形细菌素 Altitudin A。

Production of Pumilarin and a Novel Circular Bacteriocin, Altitudin A, by ECC22, a Soil-Derived Bacteriocin Producer.

机构信息

Departamento de Nutrición y Ciencia de los Alimentos (NUTRYCIAL), Sección Departamental de Nutrición y Ciencia de los Alimentos (SD-NUTRYCIAL), Facultad de Veterinaria, Universidad Complutense de Madrid (UCM), Avenida Puerta de Hierro, s/n, 28040 Madrid, Madrid, Spain.

Centro de Educación Infantil, Primaria y Secundaria Obligatoria (CEIPSO) El Cantizal, Avenida Atenas s/n, 28232 Las Rozas, Madrid, Spain.

出版信息

Int J Mol Sci. 2024 Feb 7;25(4):2020. doi: 10.3390/ijms25042020.

Abstract

The rise of antimicrobial resistance poses a significant global health threat, necessitating urgent efforts to identify novel antimicrobial agents. In this study, we undertook a thorough screening of soil-derived bacterial isolates to identify candidates showing antimicrobial activity against Gram-positive bacteria. A highly active antagonistic isolate was initially identified as ECC22, being further subjected to whole genome sequencing. A bioinformatic analysis of the ECC22 genome revealed the presence of two gene clusters responsible for synthesizing two circular bacteriocins: pumilarin and a novel circular bacteriocin named altitudin A, alongside a closticin 574-like bacteriocin (CLB) structural gene. The synthesis and antimicrobial activity of the bacteriocins, pumilarin and altitudin A, were evaluated and validated using an in vitro cell-free protein synthesis (IV-CFPS) protocol coupled to a split-intein-mediated ligation procedure, as well as through their in vivo production by recombinant cells. However, the IV-CFPS of CLB showed no antimicrobial activity against the bacterial indicators tested. The purification of the bacteriocins produced by ECC22, and their evaluation by MALDI-TOF MS analysis and LC-MS/MS-derived targeted proteomics identification combined with massive peptide analysis, confirmed the production and circular conformation of pumilarin and altitudin A. Both bacteriocins exhibited a spectrum of activity primarily directed against other spp. strains. Structural three-dimensional predictions revealed that pumilarin and altitudin A may adopt a circular conformation with five- and four-α-helices, respectively.

摘要

抗菌药物耐药性的兴起对全球健康构成了重大威胁,因此需要紧急努力寻找新的抗菌药物。在这项研究中,我们对土壤来源的细菌分离物进行了全面筛选,以鉴定对革兰氏阳性菌具有抗菌活性的候选物。最初鉴定出一种高度活跃的拮抗分离物为 ECC22,并进一步进行了全基因组测序。对 ECC22 基因组的生物信息学分析显示,存在两个负责合成两种环状细菌素的基因簇:pumilarin 和一种名为 altitudin A 的新型环状细菌素,以及一种 closticin 574 样细菌素 (CLB) 结构基因。使用体外无细胞蛋白合成 (IV-CFPS) 方案与分裂内含子介导的连接程序相结合,以及通过重组 细胞的体内生产,评估和验证了细菌素 pumilarin 和 altitudin A 的合成和抗菌活性。然而,CLB 的 IV-CFPS 对测试的细菌指示剂没有抗菌活性。通过 MALDI-TOF MS 分析和 LC-MS/MS 衍生的靶向蛋白质组学鉴定以及大规模肽分析对 ECC22 产生的细菌素进行纯化,并确认了 pumilarin 和 altitudin A 的产生和环状构象。这两种细菌素都表现出主要针对其他 spp. 菌株的活性谱。结构三维预测表明,pumilarin 和 altitudin A 可能分别采用具有五个和四个α-螺旋的环状构象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7eb5/10888436/3212e1bfea1b/ijms-25-02020-g001.jpg

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