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A Type IV-Translocated Legionella Cysteine Phytase Counteracts Intracellular Growth Restriction by Phytate.

J Biol Chem.. 2014-10; 
S Weber, CU Stirnimann, M Wieser, D Frey, R Meier, Engelhardt S, Li X, Capitani G, Kammerer RA, Hilbi H. University of Zurich, Switzerland.
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摘要

The causative agent of Legionnaires' pneumonia, Legionella pneumophila, colonizes diverse environmental niches including biofilms, plant material and protozoa. In these habitats, myo-inositol hexakisphosphate (phytate) is prevalent and used as a phosphate storage compound or as a siderophore. L. pneumophila replicates in protozoa and mammalian phagocytes within a unique "Legionella-containing vacuole" (LCV). The bacteria govern host cell interactions through the Icm/Dot type IV secretion system (T4SS) and ~300 different "effector" proteins. Here we characterize a hitherto unrecognized Icm/Dot substrate, LppA, as a phytate phosphatase (phytase). Phytase activity of recombinant LppA requi... More

关键词

Dictyostelium; Legionella; bacterial effector protein; bacterial pathogenesis; host-pathogen interaction; myo-inositol hexakisphosphate; pathogen vacuole; phosphatidylinositol phosphatase; phosphoinositide; phytate