Related Experiment Video
Updated: Aug 20, 2025

Enrichment of Native and Recombinant Extracellular Vesicles of Mycobacteria
Published on: December 8, 2023
The ESX-1 Substrate PPE68 Has a Key Function in ESX-1-Mediated Secretion in Mycobacterium marinum
Merel P M Damen1, Aniek S Meijers2, Esther M Keizer1
1Section of Molecular Microbiology, Amsterdam Institute of Molecular and Life Sciences, Vrije Universiteit Amsterdam, Amsterdam, The Netherlands.
Abstract:
Mycobacteria use specialized type VII secretion systems (T7SSs) to secrete proteins across their diderm cell envelope. One of the T7SS subtypes, named ESX-1, is a major virulence determinant in pathogenic species such as Mycobacterium tuberculosis and the fish pathogen Mycobacterium marinum. ESX-1 secretes a variety of substrates, called Esx, PE, PPE, and Esp proteins, at least some of which are folded heterodimers. Investigation into the functions of these substrates is problematic, because of the intricate network of codependent secretion between several ESX-1 substrates. Here, we describe the ESX-1 substrate PPE68 as essential for secretion of the highly immunogenic substrates EsxA and EspE via the ESX-1 system in M. marinum. While secreted PPE68 is processed on the cell surface, the majority of cell-associated PPE68 of M. marinum and M. tuberculosis is present in a cytosolic complex with its PE partner and the EspG1 chaperone. Interfering with the binding of EspG1 to PPE68 blocked its export and the secretion of EsxA and EspE. In contrast, esxA was not required for the secretion of PPE68, revealing a hierarchy in codependent secretion. Remarkably, the final 10 residues of PPE68, a negatively charged domain, seem essential for EspE secretion, but not for the secretion of EsxA and of PPE68 itself. This indicates that distinctive domains of PPE68 are involved in secretion of the different ESX-1 substrates. Based on these findings, we propose a mechanistic model for the central role of PPE68 in ESX-1-mediated secretion and substrate codependence. IMPORTANCE Pathogenic mycobacteria, such Mycobacterium tuberculosis and Mycobacterium marinum, use a type VII secretion system (T7SS) subtype, called ESX-1, to mediate intracellular survival via phagosomal rupture and subsequent translocation of the mycobacterium to the host cytosol. Identifying the ESX-1 substrate that is responsible for this process is problematic because of the intricate network of codependent secretion between ESX-1 substrates. Here, we show the central role of the ESX-1 substrate PPE68 for the secretion of ESX-1 substrates in Mycobacterium marinum. Unravelling the mechanism of codependent secretion will aid the functional understanding of T7SSs and will allow the analysis of the individual roles of ESX-1 substrates in the virulence caused by the significant human pathogen Mycobacterium tuberculosis.
Insights
Mycobacterium marinum uses the ESX-1 secretion system for virulence. The PPE68 protein is crucial for secreting other essential substrates like EsxA and EspE, revealing a secretion hierarchy.
Area of Science:
- Microbiology
- Molecular Biology
- Pathogenesis
Background:
- Pathogenic mycobacteria, including Mycobacterium tuberculosis and Mycobacterium marinum, utilize type VII secretion systems (T7SSs), specifically the ESX-1 subtype, for virulence.
- The ESX-1 system secretes various substrates (Esx, PE, PPE, Esp proteins), some forming heterodimers, but their functions are difficult to study due to codependent secretion.
- ESX-1-mediated secretion is critical for mycobacterial intracellular survival, involving phagosomal rupture and host cytosol translocation.
Purpose of the Study:
- To elucidate the role of the ESX-1 substrate PPE68 in the secretion pathway of Mycobacterium marinum.
- To investigate the codependency and hierarchy among ESX-1 substrates.
- To propose a mechanistic model for PPE68's function in ESX-1-mediated secretion.
Main Methods:
- Investigated the secretion of ESX-1 substrates in Mycobacterium marinum.
- Analyzed the interaction of PPE68 with its partner PE and the EspG1 chaperone.
- Examined the effect of mutations and interference with protein binding on substrate secretion.
Main Results:
- PPE68 is essential for the secretion of immunogenic substrates EsxA and EspE via the ESX-1 system.
- Cell-associated PPE68 forms a complex with PE and EspG1; EspG1 binding is critical for PPE68 export and subsequent secretion of EsxA and EspE.
- PPE68 secretion is independent of EsxA, establishing a secretion hierarchy, and its C-terminal domain specifically mediates EspE secretion.
Conclusions:
- PPE68 plays a central, hierarchical role in ESX-1-mediated secretion, coordinating the export of multiple substrates.
- Distinct domains of PPE68 are responsible for the secretion of different ESX-1 substrates, highlighting functional specialization.
- Understanding this codependent secretion mechanism is key to deciphering T7SS functions and the virulence strategies of Mycobacterium tuberculosis.

