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A Chlamydial Plasmid-Dependent Secretion System for the Delivery of Virulence Factors to the Host Cytosol

Chlamydia are obligate intracellular Gram-negative bacteria distinguished by a unique developmental biology confined within a parasitophorous vacuole termed an inclusion. The chlamydial plasmid is a central virulence factor in the pathogenesis of infection. Plasmid gene protein 4 (Pgp4) regulates th...

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Autores principales: Lei, Lei, Yang, Chunfu, Patton, Michael John, Smelkinson, Margery, Dorward, David, Ma, Li, Karanovic, Una, Firdous, Saba, McClarty, Grant, Caldwell, Harlan D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8262877/
https://www.ncbi.nlm.nih.gov/pubmed/34101486
http://dx.doi.org/10.1128/mBio.01179-21
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author Lei, Lei
Yang, Chunfu
Patton, Michael John
Smelkinson, Margery
Dorward, David
Ma, Li
Karanovic, Una
Firdous, Saba
McClarty, Grant
Caldwell, Harlan D.
author_facet Lei, Lei
Yang, Chunfu
Patton, Michael John
Smelkinson, Margery
Dorward, David
Ma, Li
Karanovic, Una
Firdous, Saba
McClarty, Grant
Caldwell, Harlan D.
author_sort Lei, Lei
collection PubMed
description Chlamydia are obligate intracellular Gram-negative bacteria distinguished by a unique developmental biology confined within a parasitophorous vacuole termed an inclusion. The chlamydial plasmid is a central virulence factor in the pathogenesis of infection. Plasmid gene protein 4 (Pgp4) regulates the expression of plasmid gene protein 3 (Pgp3) and chromosomal glycogen synthase (GlgA), virulence factors secreted from the inclusion to the host cytosol by an unknown mechanism. Here, we identified a plasmid-dependent secretion system for the cytosolic delivery of Pgp3 and GlgA. The secretion system consisted of a segregated population of globular structures originating from midcycle reticulate bodies. Globular structures contained the Pgp4-regulated proteins CT143, CT144, and CT050 in addition to Pgp3 and GlgA. Genetic replacement of Pgp4 with Pgp3 or GlgA negated the formation of globular structures, resulting in retention of Pgp3 and GlgA in chlamydial organisms. The generation of globular structures and secretion of virulence factors occurred independently of type 2 and type 3 secretion systems. Globular structures were enriched with lipopolysaccharide but lacked detectable major outer membrane protein and heat shock protein 60, implicating them as outer membrane vesicles. Thus, we have discovered a novel chlamydial plasmid-dependent secretion system that transports virulence factor cargo from the chlamydial inclusion to the host cytosol.
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spelling pubmed-82628772021-07-23 A Chlamydial Plasmid-Dependent Secretion System for the Delivery of Virulence Factors to the Host Cytosol Lei, Lei Yang, Chunfu Patton, Michael John Smelkinson, Margery Dorward, David Ma, Li Karanovic, Una Firdous, Saba McClarty, Grant Caldwell, Harlan D. mBio Research Article Chlamydia are obligate intracellular Gram-negative bacteria distinguished by a unique developmental biology confined within a parasitophorous vacuole termed an inclusion. The chlamydial plasmid is a central virulence factor in the pathogenesis of infection. Plasmid gene protein 4 (Pgp4) regulates the expression of plasmid gene protein 3 (Pgp3) and chromosomal glycogen synthase (GlgA), virulence factors secreted from the inclusion to the host cytosol by an unknown mechanism. Here, we identified a plasmid-dependent secretion system for the cytosolic delivery of Pgp3 and GlgA. The secretion system consisted of a segregated population of globular structures originating from midcycle reticulate bodies. Globular structures contained the Pgp4-regulated proteins CT143, CT144, and CT050 in addition to Pgp3 and GlgA. Genetic replacement of Pgp4 with Pgp3 or GlgA negated the formation of globular structures, resulting in retention of Pgp3 and GlgA in chlamydial organisms. The generation of globular structures and secretion of virulence factors occurred independently of type 2 and type 3 secretion systems. Globular structures were enriched with lipopolysaccharide but lacked detectable major outer membrane protein and heat shock protein 60, implicating them as outer membrane vesicles. Thus, we have discovered a novel chlamydial plasmid-dependent secretion system that transports virulence factor cargo from the chlamydial inclusion to the host cytosol. American Society for Microbiology 2021-06-08 /pmc/articles/PMC8262877/ /pubmed/34101486 http://dx.doi.org/10.1128/mBio.01179-21 Text en https://doi.org/10.1128/AuthorWarrantyLicense.v1This is a work of the U.S. Government and is not subject to copyright protection in the United States. Foreign copyrights may apply.
spellingShingle Research Article
Lei, Lei
Yang, Chunfu
Patton, Michael John
Smelkinson, Margery
Dorward, David
Ma, Li
Karanovic, Una
Firdous, Saba
McClarty, Grant
Caldwell, Harlan D.
A Chlamydial Plasmid-Dependent Secretion System for the Delivery of Virulence Factors to the Host Cytosol
title A Chlamydial Plasmid-Dependent Secretion System for the Delivery of Virulence Factors to the Host Cytosol
title_full A Chlamydial Plasmid-Dependent Secretion System for the Delivery of Virulence Factors to the Host Cytosol
title_fullStr A Chlamydial Plasmid-Dependent Secretion System for the Delivery of Virulence Factors to the Host Cytosol
title_full_unstemmed A Chlamydial Plasmid-Dependent Secretion System for the Delivery of Virulence Factors to the Host Cytosol
title_short A Chlamydial Plasmid-Dependent Secretion System for the Delivery of Virulence Factors to the Host Cytosol
title_sort chlamydial plasmid-dependent secretion system for the delivery of virulence factors to the host cytosol
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8262877/
https://www.ncbi.nlm.nih.gov/pubmed/34101486
http://dx.doi.org/10.1128/mBio.01179-21
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