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Published on: June 10, 2020
Expression, processing, and localization of PmpD of Chlamydia trachomatis Serovar L2 during the chlamydial
Andrey O Kiselev1, Walter E Stamm, John R Yates
1Department of Laboratory Medicine, University of Washington, Seattle, Washington, United States of America.
Background:
While families of polymorphic membrane protein (pmp) genes have been identified in several Chlamydia species, their function remains mostly unknown. These proteins are of great interest, however, because of their location in the outer membrane and possible role in chlamydial virulence.
Methodology/Principal Finding:
We analyzed the relative transcription of the pmpD gene, a member of the pmp gene family in C. trachomatis serovar L2, and its protein product translation and processing during the chlamydial developmental cycle. By real-time reverse transcription polymerase chain reaction, the pmpD gene was found to be upregulated at 16 to 24 four hours after infection. Using polyclonal antibodies generated against the predicted passenger domain of PmpD, we demonstrated that it is initially localized on the surface of reticulate bodies, followed by its secretion outside Chlamydia starting at 24 hours after infection. In elementary bodies, we found a approximately 157 kDa PmpD only inside the cell. Both events, the upregulation of pmpD gene transcription and PmpD protein processing and secretion, are coincidental with the period of replication and differentiation of RBs into EBs. We also demonstrated that, in the presence of penicillin, the cleavage and secretion of the putative passenger domain was suppressed.
Conclusion/Significance:
Our results are in agreement with the general concept that PmpD is an autotransporter protein which is post-translationally processed and secreted in the form of the putative passenger domain outside Chlamydia at mid- to- late point after infection, coinciding with the development of RBs into EBs.
Insights
The polymorphic membrane protein D (PmpD) in Chlamydia trachomatis is upregulated and secreted during bacterial development. This autotransporter protein
Area of Science:
- Microbiology
- Bacterial Pathogenesis
- Protein Secretion
Background:
- Polymorphic membrane protein (pmp) genes in Chlamydia are largely uncharacterized.
- Outer membrane proteins are implicated in chlamydial virulence.
Purpose of the Study:
- To investigate the transcription, translation, and processing of the pmpD gene and its protein product during the Chlamydia trachomatis developmental cycle.
- To understand the role of PmpD secretion in bacterial development.
Main Methods:
- Real-time reverse transcription polymerase chain reaction (RT-PCR) to analyze pmpD gene transcription.
- Immunological detection using polyclonal antibodies against PmpD.
- Analysis of PmpD localization and processing in different chlamydial forms (reticulate bodies and elementary bodies).
- Inhibition studies using penicillin to assess the effect on PmpD processing.
Main Results:
- pmpD gene transcription is upregulated 16–24 hours post-infection.
- PmpD is initially surface-localized on reticulate bodies and secreted outside Chlamydia starting at 24 hours post-infection.
- A ~157 kDa PmpD form is found intracellularly in elementary bodies.
- Penicillin treatment suppresses PmpD cleavage and secretion.
Conclusions:
- PmpD functions as an autotransporter protein, undergoing post-translational processing and secretion of its passenger domain.
- PmpD secretion occurs during the mid- to late stages of Chlamydia development, coinciding with reticulate body to elementary body differentiation.
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