2016
Antibacterial Flavonoids from Medicinal Plants Covalently Inactivate Type III Protein Secretion Substrates
Tsou LK, Lara-Tejero M, RoseFigura J, Zhang ZJ, Wang YC, Yount JS, Lefebre M, Dossa PD, Kato J, Guan F, Lam W, Cheng YC, Galán J, Hang HC. Antibacterial Flavonoids from Medicinal Plants Covalently Inactivate Type III Protein Secretion Substrates. Journal Of The American Chemical Society 2016, 138: 2209-2218. PMID: 26847396, PMCID: PMC4831573, DOI: 10.1021/jacs.5b11575.Peer-Reviewed Original ResearchConceptsVirulence pathwaysType III protein secretionType III secretion system effectorsSpecific plant metabolitesSPI-1 T3SSSecretion system effectorsS. typhimurium invasionSalmonella enterica serovar TyphimuriumSecretion substratesEnterica serovar TyphimuriumTraditional Chinese medicineUnappreciated mechanismPlant metabolitesTyphimurium invasionProtein secretionSerovar TyphimuriumAntibacterial flavonoidsBacterial invasionEpithelial cellsSpecific flavonoidsBacterial growthMedicinal plantsPathwayPotential mechanismsInvasion
1996
CROSS-TALK BETWEEN BACTERIAL PATHOGENS AND THEIR HOST CELLS
Galán J, Bliska J. CROSS-TALK BETWEEN BACTERIAL PATHOGENS AND THEIR HOST CELLS. Annual Review Of Cell And Developmental Biology 1996, 12: 221-255. PMID: 8970727, DOI: 10.1146/annurev.cellbio.12.1.221.Peer-Reviewed Original ResearchConceptsHost cellsHost cell signal transduction pathwaysProtein secretion systemHost cellular functionsSpecialized protein secretion systemSignal transduction pathwaysBacterial pathogensHost cell interactionsSecretion systemTransduction pathwaysBacterial proteinsCell physiologyBiochemical interactionsDiverse groupPathogensNovel therapeutic approachesCellsProteinTranslocationBetter understandingInteractionPathwayPhysiologyTherapeutic approachesBasic aspects
1994
Salmonella entry into mammalian cells: different yet converging signal transduction pathways?
Galán J. Salmonella entry into mammalian cells: different yet converging signal transduction pathways? Trends In Cell Biology 1994, 4: 196-199. PMID: 14731677, DOI: 10.1016/0962-8924(94)90136-8.Peer-Reviewed Original ResearchSignal transduction pathwaysTransduction pathwaysHost cell signal transduction pathwaysCell signal transduction pathwaysDifferent signaling pathwaysCommon effector moleculesMammalian cellsSalmonella entryDifferent cell linesSignaling pathwaysDiverse pathwaysEffector moleculesCell linesPathwayCommon mechanismBacteriaSalmonella bacteriaCellsUptake