Related Experiment Video
Updated: Feb 8, 2026

Using Mycobacterium smegmatis as a Bioindicator for Zinc-Limited Growth Conditions in Mycobacteria
Published on: September 20, 2024
Resuscitation-Promoting Factors Are Required for Mycobacterium smegmatis Biofilm Formation
Christopher Ealand1, Binayak Rimal2, James Chang2
1DST/NRF Centre of Excellence for Biomedical TB Research, Faculty of Health Sciences, University of the Witwatersrand, National Health Laboratory Service, Johannesburg, South Africa.
Abstract:
Resuscitation-promoting factors (Rpfs) have previously been shown to act as growth-stimulatory molecules via their lysozyme-like activity on peptidoglycan in the bacterial cell wall. In this study, we investigated the ability of Mycobacterium smegmatis strains lacking rpf genes to form biofilms and tested their susceptibilities to cell wall-targeting agents. M. smegmatis contains four distinct rpf homologues, namely, MSMEG_5700 (rpfA), MSMEG_5439 (rpfB), MSMEG_4640 (rpfE2), and MSMEG_4643 (rpfE). During axenic growth of the wild-type strain, all four mRNA transcripts were expressed to various degrees, but the expression of MSMEG_4643 was significantly greater during exponential growth. Similarly, all rpf mRNA transcripts could be detected in biofilms grown for 7, 14, and 28 days, with MSMEG_4643 expressed at the highest abundance after 7 days. In-frame unmarked deletion mutants (single and combinatorial) were generated and displayed altered colony morphologies and the inability to form typical biofilms. Moreover, any strain lacking rpfA and rpfB simultaneously exhibited increased susceptibility to rifampin, vancomycin, and SDS. Exogenous Rpf supplementation in the form of culture filtrate failed to restore biofilm formation. Liquid chromatography-mass spectrometry (LC-MS) analysis of peptidoglycan (PG) suggested a reduction in 4-3 cross-linked PG in the ΔrpfABEE2 mutant strain. In addition, the level of PG-repeat units terminating in 1,6-anhydroMurNAc appeared to be significantly reduced in the quadruple rpf mutant. Collectively, our data have shown that Rpfs play an important role in biofilm formation, possibly through alterations in PG cross-linking and the production of signaling molecules.IMPORTANCE The cell wall of pathogenic mycobacteria is composed of peptidoglycan, arabinogalactan, mycolic acids, and an outer capsule. This inherent complexity renders it resistant to many antibiotics. Consequently, its biosynthesis and remodeling during growth directly impact viability. Resuscitation-promoting factors (Rpfs), enzymes with lytic transglycosylase activity, have been associated with the revival of dormant cells and subsequent resumption of vegetative growth. Mycobacterium smegmatis, a soil saprophyte and close relative of the human pathogen Mycobacterium tuberculosis, encodes four distinct Rpfs. Herein, we assessed the relationship between Rpfs and biofilm formation, which is used as a model to study drug tolerance and bacterial signaling in mycobacteria. We demonstrated that progressive deletion of rpf genes hampered the development of biofilms and reduced drug tolerance. These effects were accompanied by a reduction in muropeptide production and altered peptidoglycan cross-linking. Collectively, these observations point to an important role for Rpfs in mycobacterial communication and drug tolerance.
Insights
Resuscitation-promoting factors (Rpfs) are crucial for biofilm formation in Mycobacterium smegmatis, impacting bacterial communication and drug tolerance. Deleting Rpf genes hinders biofilm development and increases susceptibility to antibiotics.
Area of Science:
- Microbiology
- Molecular Biology
- Bacterial Pathogenesis
Background:
- Resuscitation-promoting factors (Rpfs) are lysozyme-like enzymes involved in bacterial growth and resuscitation.
- Mycobacterium smegmatis possesses four Rpf homologues (rpfA, rpfB, rpfE2, rpfE) with varying expression levels.
- Bacterial biofilms are critical structures influencing microbial survival, drug tolerance, and intercellular communication.
Purpose of the Study:
- To investigate the role of Rpfs in biofilm formation in Mycobacterium smegmatis.
- To determine the impact of Rpf gene deletions on biofilm development and susceptibility to cell wall-targeting agents.
- To elucidate the molecular mechanisms by which Rpfs influence peptidoglycan structure and bacterial signaling.
Main Methods:
- Generation of single and combinatorial rpf deletion mutants in Mycobacterium smegmatis.
- Assessment of biofilm formation capacity and colony morphology.
- Evaluation of susceptibility to antibiotics (rifampin, vancomycin) and SDS.
- Liquid chromatography-mass spectrometry (LC-MS) analysis of peptidoglycan composition.
Main Results:
- Deletion of rpf genes, particularly rpfA and rpfB, impaired biofilm formation and altered colony morphology.
- Mutants lacking rpfA and rpfB showed increased susceptibility to rifampin, vancomycin, and SDS.
- LC-MS analysis revealed reduced 4-3 cross-linked peptidoglycan and 1,6-anhydroMurNAc termini in rpf deletion mutants.
- Exogenous Rpf supplementation did not restore biofilm formation in mutant strains.
Conclusions:
- Rpfs play a significant role in Mycobacterium smegmatis biofilm formation, likely through modulation of peptidoglycan cross-linking.
- Rpf deficiency leads to increased susceptibility to cell wall-targeting antibiotics, highlighting their importance in drug tolerance.
- These findings suggest Rpfs are key regulators of mycobacterial cell wall integrity, communication, and response to environmental stress.
Related Concept Videos
The Eukaryotic Promoter Region
Transcription Factors
Cardiopulmonary Resuscitation I: Adult
Requirements for Human Life
Oxygen
Atmospheric air is only about 20 percent oxygen, but that oxygen is a key component of the chemical reactions that keep the body alive, including the reactions that produce ATP. Brain cells are susceptible to a lack of oxygen because they require a...
Biofilms
Cardiopulmonary Resuscitation III: AED Use

