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The Shigella Spp. Type III Effector Protein OspB Is a Cysteine Protease
The type III secretion system is required for virulence of many pathogenic bacteria. Bacterial effector proteins delivered into target host cells by this system modulate host signaling pathways and processes in a manner that promotes infection. Here, we define the activity of the effector protein Os...
Autores principales: | , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Society for Microbiology
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9239218/ https://www.ncbi.nlm.nih.gov/pubmed/35638611 http://dx.doi.org/10.1128/mbio.01270-22 |
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author | Wood, Thomas E. Westervelt, Kathleen A. Yoon, Jessica M. Eshleman, Heather D. Levy, Roie Burnes, Henry Slade, Daniel J. Lesser, Cammie F. Goldberg, Marcia B. |
author_facet | Wood, Thomas E. Westervelt, Kathleen A. Yoon, Jessica M. Eshleman, Heather D. Levy, Roie Burnes, Henry Slade, Daniel J. Lesser, Cammie F. Goldberg, Marcia B. |
author_sort | Wood, Thomas E. |
collection | PubMed |
description | The type III secretion system is required for virulence of many pathogenic bacteria. Bacterial effector proteins delivered into target host cells by this system modulate host signaling pathways and processes in a manner that promotes infection. Here, we define the activity of the effector protein OspB of the human pathogen Shigella spp., the etiological agent of shigellosis and bacillary dysentery. Using the yeast Saccharomyces cerevisiae as a model organism, we show that OspB sensitizes cells to inhibition of TORC1, the central regulator of growth and metabolism. In silico analyses reveal that OspB bears structural homology to bacterial cysteine proteases that target mammalian cell processes, and we define a conserved cysteine-histidine catalytic dyad required for OspB function. Using yeast genetic screens, we identify a crucial role for the arginine N-degron pathway in the yeast growth inhibition phenotype and show that inositol hexakisphosphate is an OspB cofactor. We find that a yeast substrate for OspB is the TORC1 component Tco89p, proteolytic cleavage of which generates a C-terminal fragment that is targeted for degradation via the arginine N-degron pathway; processing and degradation of Tco89p is required for the OspB phenotype. In all, we demonstrate that the Shigella T3SS effector OspB is a cysteine protease and decipher its interplay with eukaryotic cell processes. |
format | Online Article Text |
id | pubmed-9239218 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | American Society for Microbiology |
record_format | MEDLINE/PubMed |
spelling | pubmed-92392182022-06-29 The Shigella Spp. Type III Effector Protein OspB Is a Cysteine Protease Wood, Thomas E. Westervelt, Kathleen A. Yoon, Jessica M. Eshleman, Heather D. Levy, Roie Burnes, Henry Slade, Daniel J. Lesser, Cammie F. Goldberg, Marcia B. mBio Research Article The type III secretion system is required for virulence of many pathogenic bacteria. Bacterial effector proteins delivered into target host cells by this system modulate host signaling pathways and processes in a manner that promotes infection. Here, we define the activity of the effector protein OspB of the human pathogen Shigella spp., the etiological agent of shigellosis and bacillary dysentery. Using the yeast Saccharomyces cerevisiae as a model organism, we show that OspB sensitizes cells to inhibition of TORC1, the central regulator of growth and metabolism. In silico analyses reveal that OspB bears structural homology to bacterial cysteine proteases that target mammalian cell processes, and we define a conserved cysteine-histidine catalytic dyad required for OspB function. Using yeast genetic screens, we identify a crucial role for the arginine N-degron pathway in the yeast growth inhibition phenotype and show that inositol hexakisphosphate is an OspB cofactor. We find that a yeast substrate for OspB is the TORC1 component Tco89p, proteolytic cleavage of which generates a C-terminal fragment that is targeted for degradation via the arginine N-degron pathway; processing and degradation of Tco89p is required for the OspB phenotype. In all, we demonstrate that the Shigella T3SS effector OspB is a cysteine protease and decipher its interplay with eukaryotic cell processes. American Society for Microbiology 2022-05-31 /pmc/articles/PMC9239218/ /pubmed/35638611 http://dx.doi.org/10.1128/mbio.01270-22 Text en Copyright © 2022 Wood et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) . |
spellingShingle | Research Article Wood, Thomas E. Westervelt, Kathleen A. Yoon, Jessica M. Eshleman, Heather D. Levy, Roie Burnes, Henry Slade, Daniel J. Lesser, Cammie F. Goldberg, Marcia B. The Shigella Spp. Type III Effector Protein OspB Is a Cysteine Protease |
title | The Shigella Spp. Type III Effector Protein OspB Is a Cysteine Protease |
title_full | The Shigella Spp. Type III Effector Protein OspB Is a Cysteine Protease |
title_fullStr | The Shigella Spp. Type III Effector Protein OspB Is a Cysteine Protease |
title_full_unstemmed | The Shigella Spp. Type III Effector Protein OspB Is a Cysteine Protease |
title_short | The Shigella Spp. Type III Effector Protein OspB Is a Cysteine Protease |
title_sort | shigella spp. type iii effector protein ospb is a cysteine protease |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9239218/ https://www.ncbi.nlm.nih.gov/pubmed/35638611 http://dx.doi.org/10.1128/mbio.01270-22 |
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