Development of engineered endolysins with in vitro intracellular activity against streptococcal bovine mastitis‐causing pathogens

Author:

Vander Elst Niels123ORCID,Bert Joni23ORCID,Favoreel Herman4ORCID,Lavigne Rob1ORCID,Meyer Evelyne2ORCID,Briers Yves3ORCID

Affiliation:

1. Laboratory of Gene Technology, Department of Biosystems, Faculty of Bioscience Engineering KU Leuven Heverlee Belgium

2. Laboratory of Biochemistry, Department of Veterinary and Biosciences, Faculty of Veterinary Medicine Ghent University Merelbeke Belgium

3. Laboratory of Applied Biotechnology, Department of Biotechnology, Faculty of Bioscience Engineering Ghent University Ghent Belgium

4. Laboratory of Immunology, Department of Translational Physiology, Infectiology and Public Health, Faculty of Veterinary Medicine Ghent University Merelbeke Belgium

Abstract

AbstractBacteriophage‐derived endolysins are a novel class of antimicrobials known to rapidly kill bacteria, including antibiotic‐resistant strains. We here engineered endolysins against the bovine mastitis pathogens Streptococcus uberis, Streptococcus agalactiae and Streptococcus dysgalactiae, also targeting intracellular survival and biofilm formation. For this purpose, high‐throughput DNA assembly was used to create a library with >80,000 theoretical endolysin variants for screening of their bacteriolytic activity against Gram‐positive isolates from (sub)clinically affected cows. This lytic activity was evaluated by turbidity reduction and time‐kill assays in phosphate‐buffered saline and pasteurized whole cow's milk to allow a rank up of the most potent leading candidates. A top candidate was selected with a 4.0 log killing efficacy against S. uberis, also showing similar activity against S. agalactiae and S. dysgalactiae. This top candidate eradicated S. uberis biofilm and showed intracellular activity in two bovine mammary epithelial cell lines as was confirmed by confocal microscopy. A potentiating effect on cloxacillin, a beta‐lactam penicillin used to intramammarily treat bovine Gram‐positive mastitis, was observed for this top candidate endolysin in raw cow's milk from (sub)clinically infected udders. Our in vitro results indicate that engineered endolysins may have a future role as add‐on in the treatment of bovine streptococcal mastitis.

Funder

Fonds Wetenschappelijk Onderzoek

Publisher

Wiley

Subject

Applied Microbiology and Biotechnology,Biochemistry,Bioengineering,Biotechnology

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