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

Author:

Lafuente Irene1,Sevillano Ester1,Peña Nuria1,Cuartero Alicia2,Hernández Pablo E.1ORCID,Cintas Luis M.1ORCID,Muñoz-Atienza Estefanía1ORCID,Borrero Juan1ORCID

Affiliation:

1. 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

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

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 Bacillus altitudinis ECC22, being further subjected to whole genome sequencing. A bioinformatic analysis of the B. altitudinis 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 E. coli cells. However, the IV-CFPS of CLB showed no antimicrobial activity against the bacterial indicators tested. The purification of the bacteriocins produced by B. altitudinis 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 Bacillus spp. strains. Structural three-dimensional predictions revealed that pumilarin and altitudin A may adopt a circular conformation with five- and four-α-helices, respectively.

Funder

Ministerio de Ciencia e Innovación

Atracción de Talento Program of the Comunidad de Madrid

Empleo Juvenil Program of the Comunidad de Madrid

Publisher

MDPI AG

Reference46 articles.

1. World Health Organization (2019). 2019 Antibacterial Agents in Clinical Development: An Analysis of the Antibacterial Development Pipeline, WHO.

2. Global burden of bacterial antimicrobial resistance in 2019: A systematic analysis;Murray;Lancet,2022

3. O’Neill, J. (2016). Tackling Drug-Resistant Infections Globally: Final Report and Recommendations, HM Government and Wellcome Trust.

4. WHO (2014). Antimicrobial Resistance: Global Report on Surveilance, World Health Organization.

5. WHO (2019). Antibacterial Agents in Preclinical Development: An Open Access Database, World Health Organization.

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