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Forward Genetic Approaches in Chlamydia trachomatis
Published on: October 23, 2013
A Genital Infection-Attenuated Chlamydia muridarum Mutant Infects the Gastrointestinal Tract and Protects against
Sandra G Morrison1, Amanda M Giebel2, Evelyn Toh2
1Department of Microbiology & Immunology, University of Arkansas for Medical Sciences, Little Rock, Arkansas, USA.
Abstract:
Chlamydia spp. productively infect mucosal epithelial cells of multiple anatomical sites, including the conjunctiva, lungs, gastrointestinal (GI) tract, and urogenital tract. We, and others, previously established that chlamydial GI tropism is mediated by distinct chromosomal and plasmid factors. In this study, we describe a genital infection-attenuated Chlamydia muridarum mutant (GIAM-1) that is profoundly and specifically attenuated in the murine genital tract. GIAM-1 infected the murine GI tract similarly to wild-type (WT) Chlamydia muridarum but did not productively infect the lower genital tract of female mice, ascend to infect the upper genital tract, or cause hydrosalpinx. However, GI infection of mice with GIAM-1 elicited a transmucosal immune response that protected against subsequent genital challenge with WT Chlamydia muridarum Collectively, our results demonstrate that chlamydia mutants that are profoundly attenuated for specific organ tissues can be derived and demonstrate that live-attenuated vaccine strains that infect the GI tract, but do not elicit genital tract disease, could be used to protect against chlamydia genital tract infection and disease.IMPORTANCE Chlamydia is the most common sexually transmitted bacterial infection in the United States. Most chlamydia genital infections resolve without serious consequences; however, untreated infection in women can cause pelvic inflammatory disease and infertility. Antibiotics are very effective in treating chlamydia, but most genital infections in both men and women are asymptomatic and go undiagnosed. Therefore, there is a critical need for an effective vaccine. In this work, we show that a mutant chlamydia strain, having substantially reduced virulence for genital infection, colonizes the gastrointestinal tract and produces robust immunity to genital challenge with fully virulent wild-type chlamydia. These results are an important advance in understanding chlamydial virulence and provide compelling evidence that safe and effective live-attenuated chlamydia vaccines may be feasible.
Insights
A new study shows a mutant Chlamydia muridarum strain (GIAM-1) can colonize the gastrointestinal tract and protect against genital Chlamydia infections. This live-attenuated mutant offers potential for a safe and effective Chlamydia vaccine.
Area of Science:
- Microbiology and Immunology
- Vaccine Development
- Bacterial Pathogenesis
Background:
- Chlamydia spp. infect multiple mucosal sites, including the gastrointestinal (GI) and urogenital tracts.
- Chlamydial GI tropism is influenced by chromosomal and plasmid factors.
- There is a critical need for an effective Chlamydia vaccine due to high prevalence and potential complications like pelvic inflammatory disease and infertility.
Purpose of the Study:
- To describe a Chlamydia muridarum mutant (GIAM-1) specifically attenuated in the murine genital tract.
- To evaluate the potential of GIAM-1 as a live-attenuated vaccine candidate against Chlamydia genital infections.
Main Methods:
- Generation and characterization of a genital infection-attenuated Chlamydia muridarum mutant (GIAM-1).
- Infection of female mice with GIAM-1 to assess GI tract colonization and genital tract virulence.
- Evaluation of transmucosal immune responses elicited by GIAM-1 infection.
- Assessment of protection against subsequent challenge with wild-type Chlamydia muridarum.
Main Results:
- GIAM-1 infected the murine GI tract similarly to wild-type (WT) Chlamydia muridarum.
- GIAM-1 was profoundly attenuated in the murine genital tract, failing to cause lower or upper genital tract infection or hydrosalpinx.
- GI infection with GIAM-1 elicited a protective transmucosal immune response against subsequent WT Chlamydia muridarum genital challenge.
Conclusions:
- Chlamydia mutants with organ-specific attenuation can be derived.
- Live-attenuated vaccine strains that colonize the GI tract without causing genital disease can confer protection against Chlamydia genital infection.
- These findings provide compelling evidence for the feasibility of developing safe and effective live-attenuated Chlamydia vaccines.
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