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Markerless Gene Deletion by Floxed Cassette Allelic Exchange Mutagenesis in Chlamydia trachomatis
Published on: January 30, 2020
Chlamydia trachomatis Plasmid Gene Protein 3 Is Essential for the Establishment of Persistent Infection and
Chunfu Yang1, Laszlo Kari2, Lei Lei1
1Laboratory of Clinical Immunology and Microbiology, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, Maryland, USA.
Abstract:
Chlamydia trachomatis is an obligate intracellular bacterial pathogen that causes blinding trachoma and sexually transmitted disease afflicting hundreds of millions of people globally. A fundamental but poorly understood pathophysiological characteristic of chlamydial infection is the propensity to cause persistent infection that drives damaging inflammatory disease. The chlamydial plasmid is a virulence factor, but its role in the pathogenesis of persistent infection capable of driving immunopathology is unknown. Here, we show by using mouse and nonhuman primate infection models that the secreted plasmid gene protein 3 (Pgp3) is essential for establishing persistent infection. Ppg3-dependent persistent genital tract infection resulted in a severe endometritis caused by an intense infiltration of endometrial submucosal macrophages. Pgp3 released from the cytosol of lysed infected oviduct epithelial cells, not organism outer membrane-associated Pgp3, inhibited the chlamydial killing activity of antimicrobial peptides. Genetic Pgp3 rescue experiments in cathelin-related antimicrobial peptide (CRAMP)-deficient mice showed Pgp3-targeted antimicrobial peptides to subvert innate immunity as a pathogenic strategy to establish persistent infection. These findings provide important advances in understanding the role of Pgp3 in the pathogenesis of persistent chlamydial infection and associated immunopathology.IMPORTANCEChlamydia trachomatis can cause persistent infection that drives damaging inflammatory responses resulting in infertility and blindness. Little is known about chlamydial genes that cause persistence or factors that drive damaging pathology. In this work, we show that the C. trachomatis plasmid protein gene 3 (Pgp3) is the essential virulence factor for establishing persistent female genital tract infection and provide supportive evidence that Pgp3 functions similarly in a nonhuman primate trachoma model. We further show that persistent Ppg3-dependent infection drives damaging immunopathology. These results are important advances in understanding the pathophysiology of chlamydial persistence.
Insights
The chlamydia trachomatis plasmid protein gene 3 (Pgp3) is essential for establishing persistent infections. Pgp3 subverts innate immunity, leading to damaging inflammation and disease.
Area of Science:
- Microbiology
- Immunology
- Pathogenesis
Background:
- Chlamydia trachomatis causes widespread disease, including blindness and infertility.
- Persistent chlamydial infection drives damaging inflammatory responses.
- The role of the chlamydial plasmid in persistent infection and immunopathology is poorly understood.
Purpose of the Study:
- To investigate the role of the chlamydial plasmid-encoded protein Pgp3 in persistent infection and associated immunopathology.
- To elucidate the mechanism by which Pgp3 contributes to chlamydial pathogenesis.
Main Methods:
- Infection models using mice and nonhuman primates.
- Genetic Pgp3 rescue experiments in CRAMP-deficient mice.
- Analysis of immune cell infiltration and antimicrobial peptide activity.
Main Results:
- The secreted Pgp3 protein is essential for establishing persistent genital tract infection in mouse models.
- Pgp3 inhibits the activity of antimicrobial peptides, subverting innate immunity.
- Pgp3-dependent persistent infection leads to severe endometritis due to macrophage infiltration.
- Evidence suggests Pgp3 functions similarly in a nonhuman primate trachoma model.
Conclusions:
- Pgp3 is a critical virulence factor for establishing persistent Chlamydia trachomatis infection.
- Pgp3 employs a pathogenic strategy to evade innate immunity and establish long-term infection.
- Understanding Pgp3's role advances knowledge of chlamydial persistence and associated inflammatory diseases.
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Mechanism of Conjugation
Viral Replication: Lysogenic Cycle

