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Dreus, A.

Publications and source records attributed to Dreus, A..

2 recordsLinked to original sources

Flagellar system translocates T3SS effectors critical for Salmonella infection

Type 3 secretion system (T3SS) injectisomes, the essential virulence factors of many bacterial pathogens, are thought to have evolved from the flagellar T3SS. Despite their high degree of structural similarity, whether flagella can translocate effector proteins typically associated with T3SS injectisomes remains poorly understood. Here, we demonstrate that the flagellar T3SS of Salmonella translocates T3SS effectors directly into the host cell cytosol and that this process is critical for productive infection. We show that upon host cell adhesion, flagella were required for efficient Salmonella invasion. Fully assembled flagella enabled effector translocation in a process dependent on the flagellar motor. Notably, flagella continued to translocate effectors within the Salmonella-containing vacuole until expression of the Salmonella pathogenicity island 2-encoded T3SS injectisome was induced. Together, these findings reveal a previously overlooked function of bacterial flagella in host-pathogen interactions and redefine their contribution to Salmonella virulence.

microbiology↗

Recent developments in the production of 2D- and 3D colon and stomach adenocarcinomas primary cell models

Gastric and colorectal cancer models are essential for the advancement of precision medicine discovery and development. 2D attached monolayer, spheroid and organoid approaches have all been used in the formation of biobanks containing primary patient-derived cells. Here, we report an assessment of those procedures for a panel of nine patient-derived adenocarcinoma samples, along with the most applicable method for the bio-banking of these cell types. A live cell biobank of tumour specimens would facilitate drug discovery laboratories to evaluate drugs on the population of cell cultures, prior to the clinical phase.

cell biology↗