Temporal shifts in antibiotic resistance elements govern phage-pathogen conflicts

Временные сдвиги в элементах антибиотикорезистентности определяют конфликты между фагами и патогенами
Tahmeed Ahmed, Stephanie G. Hays, Kimberley D. Seed, Kristen N. LeGault, Angus Angermeyer, Amelia C. McKitterick, Fatema‐Tuz Johura, Marzia Sultana, Munirul Alam
2021-07-29

SXT integrative and conjugative elementsVibrio choleraeantibiotic resistance elementsphage counterdefensephage-pathogen conflicts
Back to the future phage The interrelationships that prevail between bacteria and their phage parasites are subtle and evolutionarily dynamic. In Bangladesh, cholera remains endemic, and natural, clinically relevant infections have been monitored for decades. LeGault et al . investigated the relationship between antiphage defenses and phage counterresponses in human Vibrio cholerae cases. These bacteria have integrative and conjugative elements called SXT ICEs, which are notorious for carrying antibiotic resistance genes but also contain genes that defend bacteria from phage. Phage have their own counterdefense mechanisms. One constitutes a 44–amino acid peptide product in a phage lineage that inhibits the bacterium’s SXT ICE defenses. In a further complication, SXT-ICEs also inhibit the lysogenic phage that transmit Vibrio virulence factors, including cholera toxin. Therefore, this process drives bacterial diversity as well as antibiotic resistance. —CA
1
A phage lineage produces a 44-amino-acid peptide that inhibits the antiphage defenses encoded by bacterial SXT ICEs.
2
Long-term monitoring of clinical Vibrio cholerae infections in Bangladesh revealed evolutionarily dynamic conflicts between bacterial antiphage defenses and phage counterdefenses.
3
SXT ICEs can inhibit lysogenic phages that transmit Vibrio virulence factors, including cholera toxin, linking phage conflict to pathogen virulence.
4
SXT integrative and conjugative elements (ICEs), known for carrying antibiotic resistance genes, also encode defenses against phage infection.
5
Temporal shifts in SXT ICEs and phage counterresponses drive bacterial diversity while influencing the spread of antibiotic resistance.

SXT integrative and conjugative elements (SXT ICEs) in human Vibrio cholerae and their interacting phages

Temporal evolution of phage–pathogen conflicts involving SXT ICE antiphage defenses, phage counterdefenses, and effects on bacterial diversity and antibiotic resistance

Publication Details
Publication Date
2021-07-29
Journal
Publisher
ISSN
Cited by
171
Access Type
Author Information
Authors
Tahmeed Ahmed
Stephanie G. Hays
Kimberley D. Seed
Kristen N. LeGault
Angus Angermeyer
Amelia C. McKitterick
Fatema‐Tuz Johura
Marzia Sultana
Munirul Alam
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%