Cargando…

The HtrA-Like Serine Protease PepD Interacts with and Modulates the Mycobacterium tuberculosis 35-kDa Antigen Outer Envelope Protein

Mycobacterium tuberculosis remains a significant global health concern largely due to its ability to persist for extended periods within the granuloma of the host. While residing within the granuloma, the tubercle bacilli are likely to be exposed to stress that can result in formation of aberrant pr...

Descripción completa

Detalles Bibliográficos
Autores principales: White, Mark J., Savaryn, John P., Bretl, Daniel J., He, Hongjun, Penoske, Renee M., Terhune, Scott S., Zahrt, Thomas C.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3062566/
https://www.ncbi.nlm.nih.gov/pubmed/21445360
http://dx.doi.org/10.1371/journal.pone.0018175
_version_ 1782200719275720704
author White, Mark J.
Savaryn, John P.
Bretl, Daniel J.
He, Hongjun
Penoske, Renee M.
Terhune, Scott S.
Zahrt, Thomas C.
author_facet White, Mark J.
Savaryn, John P.
Bretl, Daniel J.
He, Hongjun
Penoske, Renee M.
Terhune, Scott S.
Zahrt, Thomas C.
author_sort White, Mark J.
collection PubMed
description Mycobacterium tuberculosis remains a significant global health concern largely due to its ability to persist for extended periods within the granuloma of the host. While residing within the granuloma, the tubercle bacilli are likely to be exposed to stress that can result in formation of aberrant proteins with altered structures. Bacteria encode stress responsive determinants such as proteases and chaperones to deal with misfolded or unfolded proteins. pepD encodes an HtrA-like serine protease and is thought to process proteins altered following exposure of M. tuberculosis to extra-cytoplasmic stress. PepD functions both as a protease and chaperone in vitro, and is required for aspects of M. tuberculosis virulence in vivo. pepD is directly regulated by the stress-responsive two-component signal transduction system MprAB and indirectly by extracytoplasmic function (ECF) sigma factor SigE. Loss of PepD also impacts expression of other stress-responsive determinants in M. tuberculosis. To further understand the role of PepD in stress adaptation by M. tuberculosis, a proteomics approach was taken to identify binding proteins and possible substrates of this protein. Using subcellular fractionation, the cellular localization of wild-type and PepD variants was determined. Purified fractions as well as whole cell lysates from Mycobacterium smegmatis or M. tuberculosis strains expressing a catalytically compromised PepD variant were immunoprecipitated for PepD and subjected to LC-MS/MS analyses. Using this strategy, the 35-kDa antigen encoding a homolog of the PspA phage shock protein was identified as a predominant binding partner and substrate of PepD. We postulate that proteolytic cleavage of the 35-kDa antigen by PepD helps maintain cell wall homeostasis in Mycobacterium and regulates specific stress response pathways during periods of extracytoplasmic stress.
format Text
id pubmed-3062566
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-30625662011-03-28 The HtrA-Like Serine Protease PepD Interacts with and Modulates the Mycobacterium tuberculosis 35-kDa Antigen Outer Envelope Protein White, Mark J. Savaryn, John P. Bretl, Daniel J. He, Hongjun Penoske, Renee M. Terhune, Scott S. Zahrt, Thomas C. PLoS One Research Article Mycobacterium tuberculosis remains a significant global health concern largely due to its ability to persist for extended periods within the granuloma of the host. While residing within the granuloma, the tubercle bacilli are likely to be exposed to stress that can result in formation of aberrant proteins with altered structures. Bacteria encode stress responsive determinants such as proteases and chaperones to deal with misfolded or unfolded proteins. pepD encodes an HtrA-like serine protease and is thought to process proteins altered following exposure of M. tuberculosis to extra-cytoplasmic stress. PepD functions both as a protease and chaperone in vitro, and is required for aspects of M. tuberculosis virulence in vivo. pepD is directly regulated by the stress-responsive two-component signal transduction system MprAB and indirectly by extracytoplasmic function (ECF) sigma factor SigE. Loss of PepD also impacts expression of other stress-responsive determinants in M. tuberculosis. To further understand the role of PepD in stress adaptation by M. tuberculosis, a proteomics approach was taken to identify binding proteins and possible substrates of this protein. Using subcellular fractionation, the cellular localization of wild-type and PepD variants was determined. Purified fractions as well as whole cell lysates from Mycobacterium smegmatis or M. tuberculosis strains expressing a catalytically compromised PepD variant were immunoprecipitated for PepD and subjected to LC-MS/MS analyses. Using this strategy, the 35-kDa antigen encoding a homolog of the PspA phage shock protein was identified as a predominant binding partner and substrate of PepD. We postulate that proteolytic cleavage of the 35-kDa antigen by PepD helps maintain cell wall homeostasis in Mycobacterium and regulates specific stress response pathways during periods of extracytoplasmic stress. Public Library of Science 2011-03-22 /pmc/articles/PMC3062566/ /pubmed/21445360 http://dx.doi.org/10.1371/journal.pone.0018175 Text en White et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
White, Mark J.
Savaryn, John P.
Bretl, Daniel J.
He, Hongjun
Penoske, Renee M.
Terhune, Scott S.
Zahrt, Thomas C.
The HtrA-Like Serine Protease PepD Interacts with and Modulates the Mycobacterium tuberculosis 35-kDa Antigen Outer Envelope Protein
title The HtrA-Like Serine Protease PepD Interacts with and Modulates the Mycobacterium tuberculosis 35-kDa Antigen Outer Envelope Protein
title_full The HtrA-Like Serine Protease PepD Interacts with and Modulates the Mycobacterium tuberculosis 35-kDa Antigen Outer Envelope Protein
title_fullStr The HtrA-Like Serine Protease PepD Interacts with and Modulates the Mycobacterium tuberculosis 35-kDa Antigen Outer Envelope Protein
title_full_unstemmed The HtrA-Like Serine Protease PepD Interacts with and Modulates the Mycobacterium tuberculosis 35-kDa Antigen Outer Envelope Protein
title_short The HtrA-Like Serine Protease PepD Interacts with and Modulates the Mycobacterium tuberculosis 35-kDa Antigen Outer Envelope Protein
title_sort htra-like serine protease pepd interacts with and modulates the mycobacterium tuberculosis 35-kda antigen outer envelope protein
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3062566/
https://www.ncbi.nlm.nih.gov/pubmed/21445360
http://dx.doi.org/10.1371/journal.pone.0018175
work_keys_str_mv AT whitemarkj thehtralikeserineproteasepepdinteractswithandmodulatesthemycobacteriumtuberculosis35kdaantigenouterenvelopeprotein
AT savarynjohnp thehtralikeserineproteasepepdinteractswithandmodulatesthemycobacteriumtuberculosis35kdaantigenouterenvelopeprotein
AT bretldanielj thehtralikeserineproteasepepdinteractswithandmodulatesthemycobacteriumtuberculosis35kdaantigenouterenvelopeprotein
AT hehongjun thehtralikeserineproteasepepdinteractswithandmodulatesthemycobacteriumtuberculosis35kdaantigenouterenvelopeprotein
AT penoskereneem thehtralikeserineproteasepepdinteractswithandmodulatesthemycobacteriumtuberculosis35kdaantigenouterenvelopeprotein
AT terhunescotts thehtralikeserineproteasepepdinteractswithandmodulatesthemycobacteriumtuberculosis35kdaantigenouterenvelopeprotein
AT zahrtthomasc thehtralikeserineproteasepepdinteractswithandmodulatesthemycobacteriumtuberculosis35kdaantigenouterenvelopeprotein
AT whitemarkj htralikeserineproteasepepdinteractswithandmodulatesthemycobacteriumtuberculosis35kdaantigenouterenvelopeprotein
AT savarynjohnp htralikeserineproteasepepdinteractswithandmodulatesthemycobacteriumtuberculosis35kdaantigenouterenvelopeprotein
AT bretldanielj htralikeserineproteasepepdinteractswithandmodulatesthemycobacteriumtuberculosis35kdaantigenouterenvelopeprotein
AT hehongjun htralikeserineproteasepepdinteractswithandmodulatesthemycobacteriumtuberculosis35kdaantigenouterenvelopeprotein
AT penoskereneem htralikeserineproteasepepdinteractswithandmodulatesthemycobacteriumtuberculosis35kdaantigenouterenvelopeprotein
AT terhunescotts htralikeserineproteasepepdinteractswithandmodulatesthemycobacteriumtuberculosis35kdaantigenouterenvelopeprotein
AT zahrtthomasc htralikeserineproteasepepdinteractswithandmodulatesthemycobacteriumtuberculosis35kdaantigenouterenvelopeprotein