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Published on: November 2, 2021
The Tail Associated Protein of Acinetobacter baumannii Phage ΦAB6 Is the Host Specificity Determinant Possessing
Meng-Jiun Lai1, Kai-Chih Chang1, Shiuan-Wen Huang2
1Department of Laboratory Medicine and Biotechnology, Tzu Chi University, Hualien, Taiwan.
Abstract:
Acinetobacter baumannii is a non-fermenting, gram-negative bacterium. In recent years, the frequency of A. baumannii infections has continued to increase, and multidrug-resistant strains are emerging in hospitalized patients. Therefore, as therapeutic options become limited, the potential of phages as natural antimicrobial agents to control infections is worth reconsidering. In our previous study, we isolated ten virulent double-stranded DNA A. baumannii phages, ϕAB1-9 and ϕAB11, and found that each has a narrow host range. Many reports indicate that receptor-binding protein of phage mediates host recognition; however, understanding of the specific interactions between A. baumannii and phages remains very limited. In this study, host determinants of A. baumannii phages were investigated. Sequence comparison of ϕAB6 and ϕAB1 revealed high degrees of conservation among their genes except the tail fiber protein (ORF41 in ϕAB1 and ORF40 in ϕAB6). Furthermore, we found that ORF40ϕAB6 has polysaccharide depolymerase activity capable of hydrolyzing the A. baumannii exopolysaccharide and is a component of the phage tail apparatus determining host specificity. Thus, the lytic phages and their associated depolymerase not only have potential as alternative therapeutic agents for treating A. baumannii infections but also provide useful and highly specific tools for studying host strain exopolysaccharides and producing glycoconjugate vaccines.
Insights
Bacteriophage tail fiber proteins, like ORF40ϕAB6, are key to targeting multidrug-resistant Acinetobacter baumannii. These phages and their depolymerases offer novel therapeutic and diagnostic tools for bacterial infections.
Area of Science:
- Microbiology
- Bacteriology
- Virology
Background:
- Acinetobacter baumannii infections are increasing, with emerging multidrug-resistant strains.
- Limited therapeutic options necessitate exploring alternative treatments like bacteriophages.
- Understanding phage-host interactions is crucial for developing phage-based therapies.
Purpose of the Study:
- Investigate the host determinants of Acinetobacter baumannii phages.
- Identify specific phage components responsible for host recognition and specificity.
- Explore the therapeutic potential of phages and their components against A. baumannii.
Main Methods:
- Comparative gene sequence analysis of Acinetobacter baumannii phages ϕAB1 and ϕAB6.
- Identification and characterization of the tail fiber protein (ORF40) in ϕAB6.
- Assay of polysaccharide depolymerase activity of ORF40ϕAB6.
Main Results:
- High gene conservation between ϕAB1 and ϕAB6, with variations in tail fiber proteins.
- ORF40 from ϕAB6 exhibits polysaccharide depolymerase activity.
- This depolymerase hydrolyzes A. baumannii exopolysaccharides and determines phage host specificity.
Conclusions:
- The phage tail fiber protein (ORF40ϕAB6) is a key determinant of host specificity.
- Lytic phages and their depolymerases show promise as antimicrobial agents against A. baumannii.
- These phages and enzymes can be used as tools for studying bacterial exopolysaccharides and developing vaccines.
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