Related Experiment Video
Updated: Dec 20, 2025

Following Cell-fate in E. coli After Infection by Phage Lambda
Published on: October 14, 2011
Deciphering the Role of Holin in Mycobacteriophage D29 Physiology
Varun Rakeshbhai Bavda1, Vikas Jain1
1Microbiology and Molecular Biology Laboratory, Department of Biological Sciences, Indian Institute of Science Education and Research (IISER), Bhopal, India.
Abstract:
In the era of antibiotic resistance, phage therapy is gaining attention for the treatment of pathogenic organisms such as Mycobacterium tuberculosis. The selection of phages for therapeutic purposes depends upon several factors such as the host range that a phage can infect, which can be narrow or broad, time required for the host cell lysis, and the burst size. Mycobacteriophage D29 is a virulent phage that has the ability to infect and kill several slow- and fast-growing mycobacterial species including the pathogenic M. tuberculosis. It, therefore, has the potential to be used in phage therapy against M. tuberculosis. D29 lytic cassette encodes three proteins viz. peptidoglycan hydrolase (LysA), mycolylarabinogalactan esterase (LysB), and holin, which together ensure host cell lysis in a timely manner. In this work, we have scrutinized the importance of holin in mycobacteriophage D29 physiology. Bacteriophage Recombineering of Electroporated DNA (BRED) approach was used to generate D29 holin knockout (D29Δgp11), which was further confirmed by the Deletion amplification detection assay (DADA)-PCR. Our results show that D29Δgp11 is viable and retains plaque-forming ability, although with reduced plaque size. Additionally, the host cell lysis governed by the mutant phage is significantly delayed as compared to the wild-type D29. In the absence of holin, D29 shows increased latent period and reduced burst size. Thus, our experiments show that while holin is dispensable for phage viability, it is essential for the optimal phage-mediated host cell lysis and phage propagation, which further points to the significance of the "clock" function of holin. Taken together, we show the importance of holin in governing timely and efficient host cell lysis for efficient progeny phage release, which further dictates its critical role in phage biology.
Insights
Mycobacteriophage D29 holin is essential for efficient host cell lysis and phage propagation, though not for phage viability. This study highlights holin's critical role in timely lysis for optimal progeny phage release.
Area of Science:
- Microbiology
- Virology
- Molecular Biology
Background:
- Antibiotic resistance necessitates alternative therapies like phage therapy.
- Mycobacteriophage D29 is a virulent phage with potential against Mycobacterium tuberculosis.
- D29's lytic cassette includes proteins LysA, LysB, and holin for cell lysis.
Purpose of the Study:
- To investigate the role of holin in mycobacteriophage D29 physiology.
- To determine holin's necessity for phage viability and host cell lysis.
- To understand holin's contribution to phage propagation.
Main Methods:
- Generating a D29 holin knockout mutant (D29Δgp11) using Bacteriophage Recombineering of Electroporated DNA (BRED).
- Confirming the knockout using Deletion Amplification Detection Assay (DADA)-PCR.
- Assessing plaque formation, plaque size, host cell lysis timing, latent period, and burst size.
Main Results:
- D29Δgp11 is viable with plaque-forming ability but exhibits reduced plaque size.
- Host cell lysis is significantly delayed in D29Δgp11 compared to wild-type D29.
- The absence of holin leads to an increased latent period and reduced burst size.
Conclusions:
- Holin is dispensable for mycobacteriophage D29 viability.
- Holin is essential for optimal, timely host cell lysis and efficient phage propagation.
- The study underscores the critical "clock" function of holin in phage biology and efficient progeny release.
More Related Videos
Related Concept Videos
DNA Bacteriophages
Viral Replication: Lytic Cycle
Lytic Cycle of Bacteriophages
Viral Replication: Lysogenic Cycle
Lysogenic Cycle of Bacteriophages
Other Stress Responses in Bacteria

