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Salmonella Typhimurium establishes systemic infection by replicating in host macrophages. Here we show that macrophages infected with S. Typhimurium exhibit upregulated glycolysis and decreased serine synthesis, leading to accumulation of glycolytic intermediates. The effects on...

2024-05-22 | MTBLS2347 | MetaboLights
Pseudomonas syringae uses two-component system RhpRS to regulate the expression of type III secretion system (T3SS) genes and bacterial virulence. However, the molecular mechanism and the regulons of RhpRS have yet to be fully elucidated. Here we show that RhpS functions as an autokinase, an RhpR ki...
ORGANISM(S): Pseudomonas syringae pv. phaseolicola 
Using TurboID to study the proxisome of Shigella flexneri's Type 3 Secretion System (T3SS) chaperone IpgC, and transcriptional activator MxiE. The proxisome was studied in the ON (active secretion) and OFF (inactive secretion) states of the T3SS using N and C -terminal fusions of TurboID to the bait...
ORGANISM(S): Shigella Flexneri 5a Str. M90t (ncbitaxon:1086030) 
2024-07-29 | MSV000095473 | MassIVE
Bordetella pertussis is a Gram-negative, strictly human respiratory pathogen and the causative agent of whooping cough (pertussis). Similar to other Gram-negative pathogens, B. pertussis produces a functional type III secretion system, but its role in pathogenesis of B. pertussis is enigmatic and ha...
ORGANISM(S): Bordetella pertussis (strain Tohama I / ATCC BAA-589 / NCTC 13251) Bordetella pertussis B1917 
2024-01-26 | PXD044487 | Pride
Identifying the T3SS secretome of the marine bacterium Vibrio cambpellii BB120.
ORGANISM(S): Vibrio campbellii ATCC BAA-1116 
2026-03-09 | PXD074406 | Pride
Increased Plasmid Copy-number is Essential for Yersinia T3SS Function and Virulence
Pseudomonas aeruginosa T3SS screen
Pseudomonas aeruginosa T3SS screen
In response to osmolarity, Salmonella enterica serotype Typhi (S. Typhi) regulates genes required for Vi capsular antigen expression oppositely to those required for motility and invasion. Previous studies suggest that osmoregulation of motility, invasion and capsule expression is mediated through t...
ORGANISM(S): Salmonella enterica subsp. enterica serovar Typhi 
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