Insights into the novel Enterococcus faecalis phage: A comprehensive genome analysis

Author:

Abed Sahar,Sholeh Mohammad,Khazani Asforooshani Mahshid,Shafiei MorvaridORCID,Hashemi Shahraki Abdolrazagh,Nasr Shaghayegh

Abstract

Enterococcus faecalis, a Gram-positive bacterium, poses a significant clinical challenge owing to its intrinsic resistance to a broad spectrum of antibiotics, warranting urgent exploration of innovative therapeutic strategies. This study investigated the viability of phage therapy as an alternative intervention for antibiotic-resistant E. faecalis, with a specific emphasis on the comprehensive genomic analysis of bacteriophage SAM-E.f 12. The investigation involved whole-genome sequencing of SAM-E.f 12 using Illumina technology, resulting in a robust dataset for detailed genomic characterization. Bioinformatics analyses were employed to predict genes and assign functional annotations. The bacteriophage SAM-E.f 12, which belongs to the Siphoviridae family, exhibited substantial potential, with a burst size of 5.7 PFU/infected cells and a latent period of 20 min. Host range determination experiments demonstrated its effectiveness against clinical E. faecalis strains, positioning SAM-E.f 12 as a precise therapeutic agent. Stability assays underscore resilience across diverse environmental conditions. This study provides a comprehensive understanding of SAM-E.f 12 genomic composition, lytic lifecycle parameters, and practical applications, particularly its efficacy in murine wound models. These results emphasize the promising role of phage therapy, specifically its targeted approach against antibiotic-resistant E. faecalis strains. The nuanced insights derived from this research will contribute to the ongoing pursuit of efficacious phage therapies and offer valuable implications for addressing the clinical challenges associated with E. faecalis infections.

Publisher

Public Library of Science (PLoS)

Reference58 articles.

1. A Simple Model Host for Identifying Gram-Positive Virulence Factors;DA Garsin;Proceedings of the National Academy of Sciences,2001

2. N-Methylation of Amino Acids in Gelatinase Biosynthesis-Activating Pheromone Identifies Key Site for Stability Enhancement with Retention of the Enterococcus faecalis fsr Quorum Sensing Circuit Response;DN McBrayer;ACS Infect Dis,2019

3. Occurrence of Multi-Drug Resistant Bacteria in Some Selected Street Food Samples;MA Elsayed;Journal of Pharmaceutical Research International,2019

4. Systems Biology Approach for Mapping the Response of Human Urothelial Cells to Infection by Enterococcus Faecalis;MG Dozmorov;BMC Bioinformatics,2007

5. Prevalence of Antibiotic Resistance in Enterococci: A 14 Year Survey;C Calonico;Journal of Food and Nutrition Research,2018

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