Development of a novel endolysin, PanLys.1, for the specific inhibition of Peptostreptococcus anaerobius

The objective of this study was to develop a novel endolysin (PanLys.1) for the specific killing of the ruminal hyper-ammonia-producing bacterium Peptostreptococcus anaerobius (P. anaerobius). Whole genome sequences of P. anaerobius strains and related bacteriophages were collected from the National...

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Veröffentlicht in:Animal bioscience 2023, 36(8), , pp.1285-1292
Hauptverfasser: Moon, Joonbeom, Kim, Hanbeen, Lee, Dongseok, Seo, Jakyeom
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Sprache:eng
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Zusammenfassung:The objective of this study was to develop a novel endolysin (PanLys.1) for the specific killing of the ruminal hyper-ammonia-producing bacterium Peptostreptococcus anaerobius (P. anaerobius). Whole genome sequences of P. anaerobius strains and related bacteriophages were collected from the National Center for Biotechnology Information database, and the candidate gene for PanLys.1 was isolated based on amino acid sequences and conserved domain database (CDD) analysis. The gene was overexpressed using a pET system in Escherichia coli BL21 (DE3). The lytic activity of PanLys.1 was evaluated under various conditions (dosage, pH, temperature, NaCl, and metal ions) to determine the optimal lytic activity conditions. Finally, the killing activity of PanLys.1 against P. anaerobius was confirmed using an in vitro rumen fermentation system. CDD analysis showed that PanLys.1 has a modular design with a catalytic domain, amidase-2, at the N-terminal, and a cell wall binding domain, from the CW-7 superfamily, at the C-terminal. The lytic activity of PanLys.1 against P. anaerobius was the highest at pH 8.0 (p
ISSN:2765-0189
2765-0235
DOI:10.5713/ab.22.0454