Sep 2026· Probiotics and Antimicrobial Proteins· 0 citations· 43 references
Medicine
TL;DR
Overall, this hybrid strategy effectively uncovers the antimicrobial complexity of BS4, revealing 'cryptic' peptide candidates with therapeutic potential.
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.
The genus Amycolatopsis, belonging to the phylum Actinobacteria, is known for producing diverse bioactive secondary metabolites and plays a significant role in microbial drug discovery. This study centers on the strain TRM77291, sourced from a unique habitat, and is postulated to represent a potential new species. This...
Yi-Huang Chen, Lu-Yao Wang, Tao Luo et al.· Microorganisms· 0 citations
The effectiveness of integrated genome-mining strategies for prioritizing cryptic biosynthetic gene clusters is demonstrated and the remarkable biosynthetic potential of newly identified Streptomyces isolates as a source of novel natural products is highlighted.
Nada S. Al-Theyab, Haila M. Alnassar, Mohanad A. Ibrahim et al.· Frontiers in Microbiology· 0 citations
In this study, we used comparative genomics and culture-based methods to investigate Biosynthetic Gene Clusters (BGCs) responsible for the production of antimicrobial peptides. Paenibacillus alvei strain 32 was isolated from a cystic fibrosis sputum. Its genome was sequenced using Illumina, showing a size of 6,584,590 ...
Drago Haas, Fatoumata Tambadou, T. Caradec et al.· Probiotics and Antimicrobial...· 0 citations
The benzoxazolinate moiety is a key functional group found in a few natural products (NPs), exhibiting diverse bioactivities, including antitumor, antibacterial, and cytotoxic activities. Despite their clinical importance, only a few bacterial strains and NPs have been reported harboring this rare bis-heterocyclic moie...
ABSTRACT Microbial natural products are vital for drug discovery, yet pervasive genomic fragmentation and data volume hinder the translation of metagenomic biosynthetic gene clusters (BGCs) into therapeutic leads. We present metasynBGC, a target-oriented framework that employs a “function-first” logic using experimenta...
Xiao Yang, Jia-Cheng Wu, Tao Wang et al.· Microbiology spectrum· 0 citations
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