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Engineering the Modular Receptor-Binding Proteins ofKlebsiellaPhages Switches Their Capsule Serotype Specificity
- Source :
- mBio, MBIO, mBio, Vol 12, Iss 3 (2021)
- Publication Year :
- 2021
- Publisher :
- American Society for Microbiology, 2021.
-
Abstract
- The high specificity of bacteriophages is driven by their receptor-binding proteins (RBPs). Many Klebsiella bacteriophages target the capsular exopolysaccharide as the receptor and encode RBPs with depolymerase activity. The modular structure of these RBPs with an N-terminal structural module to attach the RBP to the phage tail, and a C-terminal specificity module for exopolysaccharide degradation, supports horizontal transfer as a major evolutionary driver for Klebsiella phage RBPs. We mimicked this natural evolutionary process by the construction of modular RBP chimeras, exchanging N-terminal structural modules and C-terminal specificity modules. All chimeras strictly follow the capsular serotype specificity of the C-terminal module. Transplanting chimeras with a K11 N-terminal structural RBP module in a Klebsiella phage K11 scaffold results in a capsular serotype switch and corresponding host range modification of the synthetic phages, demonstrating that horizontal transfer of C-terminal specificity modules offers Klebsiella phages an evolutionary highway for rapid adaptation to new capsular serotypes. IMPORTANCE The antimicrobial resistance crisis has rekindled interest in bacteriophage therapy. Phages have been studied over a century as therapeutics to treat bacterial infections, but one of the biggest challenges for the use of phages in therapeutic interventions remains their high specificity. In particular, many Klebsiella phages have a narrow spectrum constrained by the high diversity of exopolysaccharide capsules that shield access to the cells. In this work, we have elaborated how Klebsiella phages deal with this high diversity by exchanging building blocks of their receptor-binding proteins.
- Subjects :
- Serotype
BACTERIAL
Klebsiella
Klebsiella pneumoniae
viruses
BACTERIOPHAGES
receptor-binding protein
Genome, Viral
Computational biology
receptor binding protein
Serogroup
DEPOLYMERASES
Microbiology
Narrow spectrum
Bacteriophage
bacteriophage
Virology
phage
CRYSTAL-STRUCTURE
Bacteriophages
ENCODES
horizontal transfer
Bacterial Capsules
TAILSPIKE PROTEIN
Modular structure
IDENTIFICATION
biology
Biology and Life Sciences
Viral Tail Proteins
biology.organism_classification
QR1-502
Bacteriophage Therapy
tail fiber
PNEUMONIAE
Horizontal gene transfer
depolymerase
HOST-RANGE
Carrier Proteins
RESISTANCE
Research Article
Protein Binding
Subjects
Details
- ISSN :
- 21507511
- Volume :
- 12
- Database :
- OpenAIRE
- Journal :
- mBio
- Accession number :
- edsair.doi.dedup.....9073a1d501cf0868c5d32cf0986fc1ff
- Full Text :
- https://doi.org/10.1128/mbio.00455-21