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Published on: September 8, 2021
LysGH15B, the SH3b domain of staphylococcal phage endolysin LysGH15, retains high affinity to staphylococci
Jingmin Gu1, Rong Lu, Xiaohe Liu
1College of Animal Science and Veterinary Medicine, Jilin University, Changchun 130062, People's Republic of China.
Abstract:
LysGH15, a phage endolysin, exhibits a particularly broad lytic spectrum against Staphylococcus aureus, especially methicillin-resistant S. aureus (MRSA). Sequence analysis reveals that this endolysin contains a C-terminal cell wall binding domain (SH3b), which causes the endolysin to bind to host strains. In this study, the substrate binding affinity of the SH3b domain (LysGH15B) was evaluated. A fusion protein of LysGH15B and green fluorescent protein (LysGH15B-GFP) were cloned and expressed in Escherichia coli. Laser scanning confocal microscopy was used to detect the fluorescence of the treated cells irradiated at different excitation wavelengths and to determine the binding activity of LysGH15B-GFP and GFP. We found that LysGH15B-GFP not only generated green fluorescence, but, more importantly, also displayed specific affinity to staphylococcal isolates, especially MRSA. In contrast, the single GFP did not display any binding activity. The high affinity was attributed to the portion of LysGH15B and the binding activity of the fusion protein was specific to staphylococci. This study provides an insight into the SH3b domain of LysGH15. The specific binding activity may cause LysGH15B to serve as an anchoring device, and offer an alternative approach for cell surface attachment onto staphylococci.
Insights
The SH3b domain of LysGH15 endolysin specifically binds to Staphylococcus aureus, including MRSA. This binding affinity suggests its potential as an anchoring device for targeting bacteria.
Area of Science:
- Microbiology
- Biochemistry
- Molecular Biology
Background:
- Phage endolysins are enzymes with antibacterial properties.
- LysGH15 demonstrates broad lytic activity against Staphylococcus aureus, particularly MRSA.
- The C-terminal SH3b domain of LysGH15 is responsible for host strain binding.
Purpose of the Study:
- To evaluate the substrate binding affinity of the LysGH15 SH3b domain (LysGH15B).
- To investigate the specificity of LysGH15B binding to staphylococcal isolates.
Main Methods:
- Cloning and expression of a LysGH15B-green fluorescent protein (GFP) fusion protein in E. coli.
- Detection of fluorescence using laser scanning confocal microscopy.
- Assessment of binding activity of LysGH15B-GFP and free GFP to staphylococcal strains.
Main Results:
- The LysGH15B-GFP fusion protein exhibited specific binding affinity to staphylococcal isolates, especially MRSA.
- Free GFP showed no significant binding activity.
- The binding was attributed to the LysGH15B domain, confirming its role in staphylococcal cell surface attachment.
Conclusions:
- The SH3b domain of LysGH15 possesses specific binding activity towards staphylococci.
- LysGH15B can function as an anchoring device for targeted cell surface attachment.
- This finding offers a potential strategy for developing novel anti-staphylococcal therapeutics.
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