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Markerless Gene Deletion by Floxed Cassette Allelic Exchange Mutagenesis in Chlamydia trachomatis
Published on: January 31, 2020
A recombinant Chlamydia trachomatis major outer membrane protein binds to heparan sulfate receptors on epithelial
1Laboratory of Intracellular Parasites, National Institute of Allergy and Infectious Diseases, Rocky Mountain Laboratory, Hamilton, MT 59840, USA.
Abstract:
Chlamydial attachment to columnar conjunctival or urogenital epithelial cells is an initial and critical step in the pathogenesis of chlamydial mucosal infections. The chlamydial major outer membrane protein (MOMP) has been implicated as a putative chlamydial cytoadhesin; however, direct evidence supporting this hypothesis has not been reported. The function of MOMP as a cytoadhesin was directly investigated by expressing the protein as a fusion with the Escherichia coli maltose binding protein (MBP-MOMP) and studying its interaction with human epithelial cells. The recombinant MBP-MOMP bound specifically to HeLa cells at 4 degrees C but was not internalized after shifting the temperature to 37 degrees C. The MBP-MOMP competitively inhibited the infectivity of viable chlamydiae for epithelial cells, indicating that the MOMP and intact chlamydiae bind the same host receptor. Heparan sulfate markedly reduced binding of the MBP-MOMP to cells, whereas chondroitin sulfate had no effect on binding. Enzymatic treatment of cells with heparitinase but not chondroitinase inhibited the binding of MBP-MOMP. These same treatments were also shown to reduce the infectivity of chlamydiae for epithelial cells. Mutant cell lines defective in heparan sulfate synthesis but not chondroitin sulfate synthesis showed a marked reduction in the binding of MBP-MOMP and were also less susceptible to infection by chlamydiae. Collectively, these findings provide strong evidence that the MOMP functions as a chlamydial cytoadhesin and that heparan sulfate proteoglycans are the host-cell receptors to which the MOMP binds.
Insights
Chlamydial major outer membrane protein (MOMP) acts as a cellular adhesion molecule, binding to heparan sulfate proteoglycans on host cells. This interaction is crucial for chlamydial infections and attachment to epithelial cells.
Area of Science:
- Microbiology
- Cell Biology
- Infectious Diseases
Background:
- Chlamydial attachment to epithelial cells is vital for mucosal infections.
- The chlamydial major outer membrane protein (MOMP) is a suspected adhesion molecule, but direct evidence is lacking.
Purpose of the Study:
- To investigate the function of MOMP as a chlamydial cytoadhesin.
- To identify the specific host cell receptors involved in chlamydial attachment.
Main Methods:
- Expressed MOMP as a fusion protein with E. coli maltose binding protein (MBP-MOMP).
- Studied the binding of MBP-MOMP to human epithelial cells (HeLa).
- Utilized enzymatic treatments (heparitinase, chondroitinase) and mutant cell lines to identify host receptors.
Main Results:
- MBP-MOMP specifically bound to HeLa cells and inhibited chlamydial infectivity.
- Heparan sulfate, but not chondroitin sulfate, reduced MBP-MOMP binding.
- Enzymatic degradation of heparan sulfate and use of deficient cell lines decreased both MBP-MOMP binding and chlamydial infection.
Conclusions:
- MOMP functions as a chlamydial cytoadhesin.
- Heparan sulfate proteoglycans are the primary host-cell receptors for MOMP-mediated chlamydial attachment.
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