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  4. Typhoid toxin sorting and exocytic transport from Salmonella Typhi-infected cells
 
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Typhoid toxin sorting and exocytic transport from Salmonella Typhi-infected cells

Journal
eLife
Journal Volume
11
Date Issued
2022-05-17
Author(s)
SHU-JUNG CHANG  
Hsu, Yu-Ting
Chen, Yun
Lin, Yen-Yi
Lara-Tejero, Maria
Galan, Jorge E
DOI
10.7554/eLife.78561
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/638337
URL
https://api.elsevier.com/content/abstract/scopus_id/85131108281
Abstract
Typhoid toxin is an essential virulence factor for Salmonella Typhi, the cause of typhoid fever in humans. This toxin has an unusual biology in that it is produced by Salmonella Typhi only when located within host cells. Once synthesized, the toxin is secreted to the lumen of the Salmonella-containing vacuole from where it is transported to the extracellular space by vesicle carrier intermediates. Here, we report the identification of the typhoid toxin sorting receptor and components of the cellular machinery that packages the toxin into vesicle carriers, and exports it to the extracellular space. We found that the cation-independent mannose-6-phosphate receptor serves as typhoid toxin sorting receptor and that the coat protein COPII and the GTPase Sar1 mediate its packaging into vesicle carriers. Formation of the typhoid toxin carriers requires the specific environment of the Salmonella Typhi-containing vacuole, which is determined by the activities of specific effectors of its type III protein secretion systems. We also found that Rab11B and its interacting protein Rip11 control the intracellular transport of the typhoid toxin carriers, and the SNARE proteins VAMP7, SNAP23, and Syntaxin 4 their fusion to the plasma membrane. Typhoid toxin's cooption of specific cellular machinery for its transport to the extracellular space illustrates the remarkable adaptation of an exotoxin to exert its function in the context of an intracellular pathogen.
Subjects
S. enterica serovar typhi; bacterial pathogenesis; bacterial toxins; exocytosis; infectious disease; intracellular pathogens; microbiology; typhoid fever; vesicle transport
SDGs

[SDGs]SDG3

Type
journal article

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