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Mycobacteriophage D29 holin C-terminal region functionally assists in holin aggregation and bacterial cell death
1Microbiology and Molecular Biology Laboratory, Department of Biological Sciences, Indian Institute of Science Education and Research (IISER), Bhopal, India.
Abstract:
Holins are phage-encoded small transmembrane proteins that perforate the bacterial cytoplasmic membrane. In most cases, this process allows the phage-encoded peptidoglycan hydrolases to act on the cell wall, resulting in host cell lysis and phage release. We report a detailed functional characterization of Mycobacterium phage D29 gp11 coding for a putative holin that, upon expression, rapidly kills both Escherichia coli and Mycobacterium smegmatis. We dissected Gp11 by making several deletions and expressing them in E. coli. The shortening of Gp11 from its C-terminus results in diminished cytotoxicity and smaller holes. Evidently, the two transmembrane domains (TMDs) present at the N-terminus of Gp11 are incapable of integrating into the cytoplasmic membrane and do not show toxicity. Interestingly, the fusion of two TMDs and a small C-terminal region that bears the coiled-coil motif resulted in restoration of the cell killing ability of the protein. We further show that the second TMD is dispensable in protein toxicity because its deletion does not abolish Gp11-mediated cell death. We conclude that Gp11 C-terminal region is necessary but not sufficient for toxicity. These results shed light on a yet undiscovered role of Gp11 C-terminal region that will help clarify the mechanism of holin-mediated membrane perforation. Finally, we abolish the toxicity of Gp11 using a specific Gly to Asp substitution in the putative loop region of the protein; the mutant protein may help to clarify how holin functions in mycobacteriophage D29.
Insights
Mycobacterium phage D29 gp11, a holin protein, rapidly kills bacteria by perforating the cell membrane. Its C-terminal region is crucial for toxicity, aiding in understanding holin function.
Area of Science:
- Microbiology
- Molecular Biology
- Virology
Background:
- Holins are phage-encoded proteins essential for bacterial lysis and phage propagation.
- Holins create pores in the bacterial cytoplasmic membrane, enabling peptidoglycan hydrolases to access the cell wall.
Purpose of the Study:
- To functionally characterize Mycobacterium phage D29 gp11, a putative holin.
- To elucidate the structural requirements for gp11-mediated membrane perforation and bacterial cell killing.
Main Methods:
- Functional analysis of gp11 through systematic C-terminal deletions and expression in Escherichia coli and Mycobacterium smegmatis.
- Investigating the role of transmembrane domains (TMDs) and a C-terminal coiled-coil motif in gp11 toxicity.
- Site-directed mutagenesis to abolish gp11 toxicity.
Main Results:
- Truncation of gp11 from the C-terminus reduced cytotoxicity and pore size.
- The N-terminal two TMDs alone were insufficient for membrane integration and toxicity.
- Fusion of TMDs with a small C-terminal region restored cell-killing ability.
- The second TMD was found to be dispensable for toxicity.
- A Gly to Asp substitution in the putative loop region abolished gp11 toxicity.
Conclusions:
- The C-terminal region of gp11 is necessary but not sufficient for its toxicity.
- These findings highlight a previously unrecognized role for the gp11 C-terminal region in holin-mediated membrane perforation.
- A non-toxic gp11 mutant provides a tool for further mechanistic studies of holin function.
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