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Comparative expression profiling of the Chlamydia trachomatis pmp gene family for clinical and reference strains
Alexandra Nunes1, João P Gomes, Sally Mead
1Center for Immunobiology and Vaccine Development, Children's Hospital Oakland Research Institute, Oakland, California, United States of America.
Background:
Chlamydia trachomatis, an obligate intracellular pathogen, is a leading worldwide cause of ocular and urogenital diseases. Advances have been made in our understanding of the nine-member polymorphic membrane protein (Pmp) gene (pmp) family of C. trachomatis. However, there is only limited information on their biologic role, especially for biological variants (biovar) and clinical strains.
Methodology/Principal Findings:
We evaluated expression for pmps throughout development for reference strains E/Bour and L2/434, representing different biovars, and for clinical E and L2 strains. Immunoreactivity of patient sera to recombinant (r)Pmps was also determined. All pmps were expressed at two hours. pmpA had the lowest expression but was up-regulated at 12 h for all strains, indicating involvement in reticulate body development. For pmpD, expression peaked at 36 h. Additionally, 57.7% of sera from infected and 0% from uninfected adolescents were reactive to rPmpD (p = 0.001), suggesting a role in immunogenicity. pmpF had the highest expression levels for all clinical strains and L2/434 with differential expression of the pmpFE operon for the same strains. Sera were nonreactive to rPmpF despite immunoreactivity to rMOMP and rPmpD, suggesting that PmpF is not associated with humoral immune responses. pmpFE sequences for clinical strains were identical to those of the respective reference strains. We identified the putative pmpFE promoter, which was, surprisingly, 100% conserved for all strains. Analyses of ribosomal binding sites, RNase E, and hairpin structures suggested complex regulatory mechanism(s) for this >6 Kb operon.
Conclusions/Significance:
The dissimilar expression of the same pmp for different C. trachomatis strains may explain different strain-specific needs and phenotypic distinctions. This is further supported by the differential immunoreactivity to rPmpD and rPmpF of sera from patients infected with different strains. Furthermore, clinical E strains did not correlate with the E reference strain at the gene expression level, reinforcing the need for expansive studies of clinical strains.
Insights
Chlamydia trachomatis polymorphic membrane proteins (Pmps) show varied expression across strains, impacting disease and immune response. PmpD is immunogenic, while PmpF is not, highlighting strain-specific differences.
Area of Science:
- Microbiology
- Immunology
- Genetics
Background:
- Chlamydia trachomatis causes significant ocular and urogenital diseases globally.
- The polymorphic membrane protein (Pmp) family in C. trachomatis is crucial but poorly understood, especially in clinical strains.
- Limited data exists on the specific biological roles of Pmp family members in different C. trachomatis variants.
Purpose of the Study:
- To investigate the expression patterns of C. trachomatis polymorphic membrane proteins (Pmps) during development.
- To assess the immunogenicity of specific Pmps using patient sera.
- To compare Pmp gene expression between reference and clinical strains of C. trachomatis.
Main Methods:
- Evaluated Pmp expression throughout developmental stages for reference and clinical C. trachomatis strains.
- Assessed patient serum reactivity against recombinant Pmps (rPmps).
- Analyzed pmpFE operon sequences, promoter regions, and regulatory elements.
Main Results:
- All Pmps were expressed early; pmpA and pmpD showed stage-specific regulation.
- Recombinant PmpD (rPmpD) was immunogenic, with 57.7% of infected patient sera showing reactivity.
- PmpF exhibited high expression in clinical strains but was not associated with humoral immune responses.
- The pmpFE operon promoter was conserved, but complex regulatory mechanisms were suggested.
Conclusions:
- Differential Pmp expression contributes to strain-specific phenotypes and needs in C. trachomatis.
- Immunoreactivity to Pmps like PmpD and PmpF varies between strains and patient sera.
- Clinical C. trachomatis strains may not mirror reference strains at the gene expression level, necessitating further research.
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