Integrated Genome Mining and Bioactivity-Guided Isolation of Antimicrobial Peptides from Bacillus amyloliquefaciens BS4

peer-reviewed · Probiotics and Antimicrobial Proteins · 2026

peer-reviewed · Probiotics and Antimicrobial Proteins · 2026. Ana Paula Palacios-Rodriguez et al. Bacterial resistance remains a critical global health challenge, driving the continuous search for novel…
Date 2026-09-07
Type peer-reviewed
Venue Probiotics and Antimicrobial Proteins
Publisher Springer Science and Business Media LLC
Contribution downstream-application
DOI 10.1007/s12602-026-11205-5
Citations (OpenAlex) 0

Abstract

Bacterial resistance remains a critical global health challenge, driving the continuous search for novel antimicrobial agents. Bacillus amyloliquefaciens is a recognized repository of bioactive metabolites; however, its full biosynthetic potential requires integrated genomic and experimental validation. This study characterized the antimicrobial profile of B. amyloliquefaciens BS4 through a hybrid pipeline. Genome sequencing and de novo assembly revealed a 3.9 Mb chromosome with a G + C content of 46.14%. Functional annotation identified 3,887 coding sequences, including pathways for siderophore biosynthesis and a complete bacilysin biosynthetic cluster. BGC analysis using antiSMASH v7.1.0 and BAGEL4 identified 18 biosynthetic gene clusters, while similarity network analysis via BiG-SCAPE highlighted unique singleton BGCs, indicating untapped biosynthetic diversity. Although in silico screening via Macrel predicted two putative cationic antimicrobial peptides (AMPs), bioactivity-guided purification utilizing sequential RP-HPLC, and de novo sequencing revealed a distinct set of four active peptides. Notably, three of these sequences were identified as fragments derived from the BclA exosporium protein family, highlighting the structural proteome as a non-canonical source of antimicrobials. The purified fractions exhibited activity against M. luteus and E. coli, while displaying no significant hemolytic activity or cytotoxicity, even above the MIC values. Molecular docking further supported the interaction of these candidates with bacterial targets. Overall, this hybrid strategy effectively uncovers the antimicrobial complexity of BS4, revealing ‘cryptic’ peptide candidates with therapeutic potential.

Authors

  1. Ana Paula Palacios-Rodriguez · Instituto Butantan, Universidade de São Paulo
  2. Abraham Espinoza-Culupú · National University of San Marcos
  3. Joel Torres Villena · National University of San Marcos
  4. Pablo Ramirez · National University of San Marcos
  5. Tito Sánchez-Rojas · National University of San Marcos
  6. Pedro Ismael Silva Junior · Instituto Butantan, Universidade de São Paulo

Methods and tools

  • Bacillus amyloliquefaciens BS4 AMPs: Genome mining plus bioactivity-guided purification and de novo sequencing found four antimicrobial peptides, three from the BclA exosporium protein family.

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