While mucosal inflammation is a major source of stress during enteropathogen infection, it remains to be fully elucidated how the host benefits from this environment to clear the pathogen. Here, we show that host stress induced by different stimuli mimicking inflammatory conditions strongly reduces the binding of Shigella flexneri to epithelial cells. Mechanistically, stress activates acid sphingomyelinase leading to host membrane remodeling. Consequently, knockdown or pharmacological inhibition of the acid sphingomyelinase blunts the stress-dependent inhibition of Shigella binding to host cells. Interestingly, stress caused by intracellular Shigella replication also results in remodeling of the host cell membrane, in vitro and in vi...
International audienceIntracellular trafficking pathways in eukaryotic cells are essential to mainta...
International audienceUpon infection with Shigella flexneri, epithelial cells release ATP through co...
International audienceUpon infection with Shigella flexneri, epithelial cells release ATP through co...
International audienceWhile mucosal inflammation is a major source of stress during enteropathogen i...
International audienceWhile mucosal inflammation is a major source of stress during enteropathogen i...
The human-bacterial pathogen interaction is a complex process that results from a prolonged evoluti...
The human-bacterial pathogen interaction is a complex process that results from a prolonged evoluti...
Intracellular pathogens are differentially sensed by the compartmentalized host immune system. Never...
International audienceIntracellular pathogens are differentially sensed by the compartmentalized hos...
International audienceIntracellular pathogens are differentially sensed by the compartmentalized hos...
International audienceIntracellular pathogens are differentially sensed by the compartmentalized hos...
International audienceIntracellular pathogens are differentially sensed by the compartmentalized hos...
Shigella flexneri is an enteric pathogen that causes massive inflammation and destruction of the hum...
SummaryUpon infection with Shigella flexneri, epithelial cells release ATP through connexin hemichan...
International audienceUpon infection with Shigella flexneri, epithelial cells release ATP through co...
International audienceIntracellular trafficking pathways in eukaryotic cells are essential to mainta...
International audienceUpon infection with Shigella flexneri, epithelial cells release ATP through co...
International audienceUpon infection with Shigella flexneri, epithelial cells release ATP through co...
International audienceWhile mucosal inflammation is a major source of stress during enteropathogen i...
International audienceWhile mucosal inflammation is a major source of stress during enteropathogen i...
The human-bacterial pathogen interaction is a complex process that results from a prolonged evoluti...
The human-bacterial pathogen interaction is a complex process that results from a prolonged evoluti...
Intracellular pathogens are differentially sensed by the compartmentalized host immune system. Never...
International audienceIntracellular pathogens are differentially sensed by the compartmentalized hos...
International audienceIntracellular pathogens are differentially sensed by the compartmentalized hos...
International audienceIntracellular pathogens are differentially sensed by the compartmentalized hos...
International audienceIntracellular pathogens are differentially sensed by the compartmentalized hos...
Shigella flexneri is an enteric pathogen that causes massive inflammation and destruction of the hum...
SummaryUpon infection with Shigella flexneri, epithelial cells release ATP through connexin hemichan...
International audienceUpon infection with Shigella flexneri, epithelial cells release ATP through co...
International audienceIntracellular trafficking pathways in eukaryotic cells are essential to mainta...
International audienceUpon infection with Shigella flexneri, epithelial cells release ATP through co...
International audienceUpon infection with Shigella flexneri, epithelial cells release ATP through co...