Bei einer Infektion mit Yersinia enterocolitica kommt es über das Typ III Sekretionssystem zur Translokation der Yops in eukaryontische Zellen. Zum besseren Verständnis der Yersinien Infektion ist es wichtig die Zielzellen der Translokation zu kennen. In dieser Studie wurde ein Reportersystem etabliert, mit dem man Yop Translokation in vitro und in vivo nachweisen kann.During an infection with Yersinia enterocolitica yops in eucaryotic cells will be translocated with the help of the Type III scretion system. For better understanding of the yersinsia infection it is important to know which are the target cells of the translocation. In this study a reporter system was established, with which you can detect yop transolaction in vitro and in vi...
Yersinia enterocolitica employs a type three secretion system (T3SS) to translocate immunosuppressiv...
Successful establishment of Yersinia infections requires the type III machinery, a protein transport...
Le virulon Yop de Yersinia constitue le paradigme des systèmes de sécrétion-translocation de type II...
Bei einer Infektion mit Yersinia enterocolitica kommt es über das Typ III Sekretionssystem zur Trans...
Humanpathogene Yersinien unterlaufen die angeborene Immunabwehr des Wirtes, indem sie eine Gruppe vo...
In dieser Arbeit konnte erstmals am Beispiel von Y. enterocolitica YopT und C. difficile Toxin B die...
This chapter discusses the methods that are used to elucidate the action of the Yop virulon, an arch...
Y. enterocolitica translocates virulence proteins, called Yop effectors, into the cytosol of eukaryo...
Yersinia enterocolitica ist ein gastroenteritischer Krankheitserreger, welcher vor allem durch konta...
Pathogenic bacteria of the genus Yersinia release in vitro a set of antihost proteins called Yops. U...
Successful establishment of Yersinia infections requires the type III machinery, a protein transport...
Type III secretion systems (T3SSs) are essential virulence factors of numerous bacterial pathogens. ...
Yersinia enterocolitica biovar 1B maintains two type III secretion systems (T3SS) that are involved ...
Type III secretion systems (T3SSs) are essential virulence factors of numerous bacterial pathogens. ...
Type III secretion systems (T3SSs) are essential virulence factors of numerous bacterial pathogens. ...
Yersinia enterocolitica employs a type three secretion system (T3SS) to translocate immunosuppressiv...
Successful establishment of Yersinia infections requires the type III machinery, a protein transport...
Le virulon Yop de Yersinia constitue le paradigme des systèmes de sécrétion-translocation de type II...
Bei einer Infektion mit Yersinia enterocolitica kommt es über das Typ III Sekretionssystem zur Trans...
Humanpathogene Yersinien unterlaufen die angeborene Immunabwehr des Wirtes, indem sie eine Gruppe vo...
In dieser Arbeit konnte erstmals am Beispiel von Y. enterocolitica YopT und C. difficile Toxin B die...
This chapter discusses the methods that are used to elucidate the action of the Yop virulon, an arch...
Y. enterocolitica translocates virulence proteins, called Yop effectors, into the cytosol of eukaryo...
Yersinia enterocolitica ist ein gastroenteritischer Krankheitserreger, welcher vor allem durch konta...
Pathogenic bacteria of the genus Yersinia release in vitro a set of antihost proteins called Yops. U...
Successful establishment of Yersinia infections requires the type III machinery, a protein transport...
Type III secretion systems (T3SSs) are essential virulence factors of numerous bacterial pathogens. ...
Yersinia enterocolitica biovar 1B maintains two type III secretion systems (T3SS) that are involved ...
Type III secretion systems (T3SSs) are essential virulence factors of numerous bacterial pathogens. ...
Type III secretion systems (T3SSs) are essential virulence factors of numerous bacterial pathogens. ...
Yersinia enterocolitica employs a type three secretion system (T3SS) to translocate immunosuppressiv...
Successful establishment of Yersinia infections requires the type III machinery, a protein transport...
Le virulon Yop de Yersinia constitue le paradigme des systèmes de sécrétion-translocation de type II...