Related Experiment Video
Updated: Jan 28, 2026

Modeling Tuberculosis in Mycobacterium marinum Infected Adult Zebrafish
Published on: October 8, 2018
A New ESX-1 Substrate in Mycobacterium marinum That Is Required for Hemolysis but Not Host Cell Lysis
Rachel E Bosserman1, Kathleen R Nicholson1, Matthew M Champion2
1Department of Biological Sciences, University of Notre Dame, Notre Dame, Indiana, USA.
Abstract:
The ESX-1 (ESAT-6 system 1) secretion system plays a conserved role in the virulence of diverse mycobacterial pathogens, including the human pathogen Mycobacterium tuberculosis and M. marinum, an environmental mycobacterial species. The ESX-1 system promotes the secretion of protein virulence factors to the extracytoplasmic environment. The secretion of these proteins triggers the host response by lysing the phagosome during macrophage infection. Using proteomic analyses of the M. marinum secretome in the presence and absence of a functional ESX-1 system, we and others have hypothesized that MMAR_2894, a PE family protein, is a potential ESX-1 substrate in M. marinum We used genetic and quantitative proteomic approaches to determine if MMAR_2894 is secreted by the ESX-1 system, and we defined the requirement of MMAR_2894 for ESX-1-mediated secretion and virulence. We show that MMAR_2894 is secreted by the ESX-1 system in M. marinum and is itself required for the optimal secretion of the known ESX-1 substrates in M. marinum Moreover, we found that MMAR_2894 was differentially required for hemolysis and cytolysis of macrophages, two lytic activities ascribed to the M. marinum ESX-1 system.IMPORTANCE Both Mycobacterium tuberculosis, the cause of human tuberculosis (TB), and Mycobacterium marinum, a pathogen of ectotherms, use the ESX-1 secretion system to cause disease. There are many established similarities between the ESX-1 systems in M. tuberculosis and in M. marinum Yet the two bacteria infect different hosts, hinting at species-specific functions of the ESX-1 system. Our findings demonstrate that MMAR_2894 is a PE protein secreted by the ESX-1 system of M. marinum We show that MMAR_2894 is required for the optimal secretion of mycobacterial proteins required for disease. Because the MMAR_2894 gene is not conserved in M. tuberculosis, our findings demonstrate that MMAR_2894 may contribute to a species-specific function of the ESX-1 system in M. marinum, providing new insight into how the M. marinum and M. tuberculosis systems differ.
Insights
The ESX-1 secretion system is vital for virulence in Mycobacterium tuberculosis and M. marinum. This study identifies MMAR_2894 as a key M. marinum ESX-1 substrate essential for virulence factor secretion.
Area of Science:
- Microbiology
- Molecular Biology
- Pathogenesis
Background:
- The ESX-1 secretion system is a conserved virulence factor in mycobacteria, including Mycobacterium tuberculosis and M. marinum.
- ESX-1 facilitates the secretion of effector proteins, leading to host cell lysis and immune response activation.
Purpose of the Study:
- To investigate the role of MMAR_2894, a PE family protein, as a potential ESX-1 substrate in M. marinum.
- To determine if MMAR_2894 is secreted by ESX-1 and if it is required for ESX-1-mediated secretion and virulence.
Main Methods:
- Proteomic analysis of the M. marinum secretome with and without functional ESX-1.
- Genetic approaches to assess MMAR_2894 secretion and its requirement for ESX-1 activity.
- Quantitative proteomic analysis to evaluate MMAR_2894's impact on known ESX-1 substrates.
Main Results:
- MMAR_2894 is confirmed as an ESX-1 substrate in M. marinum.
- MMAR_2894 is essential for the optimal secretion of other ESX-1 substrates.
- MMAR_2894 plays a differential role in M. marinum's hemolytic and macrophage cytolytic activities.
Conclusions:
- MMAR_2894 is a novel ESX-1 substrate in M. marinum, crucial for virulence.
- The MMAR_2894 gene's lack of conservation in M. tuberculosis suggests a species-specific function for the ESX-1 system in M. marinum.
- This finding provides insights into the divergent roles of ESX-1 systems in different mycobacterial species.
More Related Videos
11:12Ex Vivo Red Blood Cell Hemolysis Assay for the Evaluation of pH-responsive Endosomolytic Agents for Cytosolic Delivery of Biomacromolecular Drugs
Published on: March 9, 2013
10:12Author Spotlight: Exploring the Role of Unfolded Protein Response in HIV-1 Replication and Infectivity
Published on: June 14, 2024
Related Concept Videos
Tissue Homogenization and Cell Lysis
Mechanical methods of tissue homogenization
These methods rely on applying external physical force to disrupt...
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...
Proteins: Dietary Sources and Requirements
Oxygen Requirements and Growth Patterns
Energy-requiring Steps of Glycolysis
Carbohydrates: Dietary Sources and Requirements