金沢大学医薬保健研究域薬学系In this study, fruit fly of the genus Drosophila is utilized as a suitable model animal to investigate the molecular mechanisms of innate immunity. To combat orally transmitted pathogenic Gram-negative bacteria, the Drosophila gut is armed with the peritrophic matrix, which is a physical barrier composed of chitin and glycoproteins: the Duox system that produces reactive oxygen species (ROS), which in turn sterilize infected microbes, and the IMD pathway that regulates the expression of antimicrobial peptides (AMPs), which in turn control ROS-resistant pathogens. However, little is known about the defense mechanisms against Gram-positive bacteria in the fly gut. Here, we show that the peritrophic matrix protects Drosophila aga...
International audienceSerratia marcescens is an entomopathogenic bacterium that opportunistically in...
Gut homeostasis is controlled by both immune and developmental mechanisms, and its disruption can le...
Pathogens have developed multiple strategies that allow them to exploit host resources and resist th...
Although Drosophila systemic immunity is extensively studied, little is known about the fly's intest...
SummaryAlthough Drosophila systemic immunity is extensively studied, little is known about the fly's...
During the past year, dramatic progress has been achieved in our understanding of Drosophila immune ...
The signaling pathways that control intestinal development, regeneration and disease show a high deg...
The systemic immune response of Drosophila is known to be induced both by septic injury and by oral ...
Intestinal homeostasis is achieved, in part, by the integration of a complex set of mechanisms that ...
International audienceThe innate immune response was once considered to be a limited set of response...
In the Drosophila gut, reactive oxygen species (ROS)-dependent immunity is critical to host survival...
International audienceSerratia marcescens is an entomopathogenic bacterium that opportunistically in...
International audienceSerratia marcescens is an entomopathogenic bacterium that opportunistically in...
International audienceSerratia marcescens is an entomopathogenic bacterium that opportunistically in...
International audienceSerratia marcescens is an entomopathogenic bacterium that opportunistically in...
International audienceSerratia marcescens is an entomopathogenic bacterium that opportunistically in...
Gut homeostasis is controlled by both immune and developmental mechanisms, and its disruption can le...
Pathogens have developed multiple strategies that allow them to exploit host resources and resist th...
Although Drosophila systemic immunity is extensively studied, little is known about the fly's intest...
SummaryAlthough Drosophila systemic immunity is extensively studied, little is known about the fly's...
During the past year, dramatic progress has been achieved in our understanding of Drosophila immune ...
The signaling pathways that control intestinal development, regeneration and disease show a high deg...
The systemic immune response of Drosophila is known to be induced both by septic injury and by oral ...
Intestinal homeostasis is achieved, in part, by the integration of a complex set of mechanisms that ...
International audienceThe innate immune response was once considered to be a limited set of response...
In the Drosophila gut, reactive oxygen species (ROS)-dependent immunity is critical to host survival...
International audienceSerratia marcescens is an entomopathogenic bacterium that opportunistically in...
International audienceSerratia marcescens is an entomopathogenic bacterium that opportunistically in...
International audienceSerratia marcescens is an entomopathogenic bacterium that opportunistically in...
International audienceSerratia marcescens is an entomopathogenic bacterium that opportunistically in...
International audienceSerratia marcescens is an entomopathogenic bacterium that opportunistically in...
Gut homeostasis is controlled by both immune and developmental mechanisms, and its disruption can le...
Pathogens have developed multiple strategies that allow them to exploit host resources and resist th...