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Updated: Nov 14, 2025

Using a Bacterial Pathogen to Probe for Cellular and Organismic-level Host Responses
Published on: February 22, 2019
Breaching the Bacterial Envelope: The Pivotal Role of Perforin-2 (MPEG1) Within Phagocytes
Leidy C Merselis1, Zachary P Rivas1, George P Munson1
1Department of Microbiology and Immunology, Leonard M. Miller School of Medicine, University of Miami, Miami, FL, United States.
Abstract:
The membrane attack complex (MAC) of the complement system and Perforin-1 are well characterized innate immune effectors. MAC is composed of C9 and other complement proteins that target the envelope of gram-negative bacteria. Perforin-1 is deployed when killer lymphocytes degranulate to destroy virally infected or cancerous cells. These molecules polymerize with MAC-perforin/cholesterol-dependent cytolysin (MACPF/CDC) domains of each monomer deploying amphipathic β-strands to form pores through target lipid bilayers. In this review we discuss one of the most recently discovered members of this family; Perforin-2, the product of the Mpeg1 gene. Since their initial description more than 100 years ago, innumerable studies have made macrophages and other phagocytes some of the best understood cells of the immune system. Yet remarkably it was only recently revealed that Perforin-2 underpins a pivotal function of phagocytes; the destruction of phagocytosed microbes. Several studies have established that phagocytosed bacteria persist and in some cases flourish within phagocytes that lack Perforin-2. When challenged with either gram-negative or gram-positive pathogens Mpeg1 knockout mice succumb to infectious doses that the majority of wild-type mice survive. As expected by their immunocompromised phenotype, bacterial pathogens replicate and disseminate to deeper tissues of Mpeg1 knockout mice. Thus, this evolutionarily ancient gene endows phagocytes with potent bactericidal capability across taxa spanning sponges to humans. The recently elucidated structures of mammalian Perforin-2 reveal it to be a homopolymer that depends upon low pH, such as within phagosomes, to transition to its membrane-spanning pore conformation. Clinical manifestations of Mpeg1 missense mutations further highlight the pivotal role of Perforin-2 within phagocytes. Controversies and gaps within the field of Perforin-2 research are also discussed as well as animal models that may be used to resolve the outstanding issues. Our review concludes with a discussion of bacterial counter measures against Perforin-2.
Insights
Perforin-2, a protein encoded by the Mpeg1 gene, is crucial for phagocyte function in destroying microbes. Its absence in Mpeg1 knockout mice leads to increased susceptibility to bacterial infections, highlighting its role in innate immunity.
Area of Science:
- Immunology
- Molecular Biology
- Microbiology
Background:
- The membrane attack complex (MAC) and Perforin-1 are known immune effectors that form pores in cell membranes.
- Perforin-2, encoded by the Mpeg1 gene, is a recently identified member of the MAC-perforin/cholesterol-dependent cytolysin (MACPF/CDC) domain family.
Purpose of the Study:
- To review the role of Perforin-2 in phagocyte-mediated destruction of microbes.
- To discuss the structure, function, and clinical relevance of Perforin-2.
- To explore current research gaps and future directions in Perforin-2 research.
Main Methods:
- Review of existing literature on Perforin-2 and related proteins.
- Analysis of Mpeg1 knockout mouse models to assess susceptibility to pathogens.
- Examination of the structural and functional properties of Perforin-2, including its pH-dependent conformational changes.
Main Results:
- Perforin-2 is essential for phagocytes to eliminate ingested bacteria, with Mpeg1 knockout mice exhibiting severe susceptibility to both gram-negative and gram-positive pathogens.
- Mammalian Perforin-2 forms a homopolymer that requires low pH, such as in phagosomes, to create membrane pores.
- Clinical mutations in Mpeg1 underscore Perforin-2's critical role in host defense.
Conclusions:
- Perforin-2 is an evolutionarily conserved effector molecule critical for innate immunity across diverse species.
- Understanding Perforin-2's mechanisms and bacterial counter-strategies is vital for developing new therapeutic approaches against infectious diseases.
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