about
The intracellular bacteria Chlamydia hijack peroxisomes and utilize their enzymatic capacity to produce bacteria-specific phospholipidsBiochemical and Structural Insights into Microtubule Perturbation by CopN from Chlamydia pneumoniaeDetection of three nonsense mutations and one missense mutation in the interleukin-2 receptor gamma chain gene in SCIDX1 that differently affect the mRNA processingSNARE protein mimicry by an intracellular bacteriumSmall molecule inhibitors of the Yersinia type III secretion system impair the development of Chlamydia after entry into host cellsIntracellular bacteria encode inhibitory SNARE-like proteinsHistone methylation by NUE, a novel nuclear effector of the intracellular pathogen Chlamydia trachomatisQuantitative monitoring of the Chlamydia trachomatis developmental cycle using GFP-expressing bacteria, microscopy and flow cytometry.Tracking Proteins Secreted by Bacteria: What's in the Toolbox?Multi-genome identification and characterization of chlamydiae-specific type III secretion substrates: the Inc proteinsRerouting of host lipids by bacteria: are you CERTain you need a vesicle?Activation of type III interferon genes by pathogenic bacteria in infected epithelial cells and mouse placenta.Massive expansion of Ubiquitination-related gene families within the Chlamydiae.Chlamydia: five years A.G. (after genome).Involvement of the ubiquitin/proteasome system in sorting of the interleukin 2 receptor beta chain to late endocytic compartmentsRecent insights into the mechanisms of Chlamydia entry.Acute cholesterol depletion inhibits clathrin-coated pit budding.Editorial overview: Host-microbe interactions: bacteria. War and peace: the fragile equilibrium between bacteria and host.Sequestration of host metabolism by an intracellular pathogenImmunology and the confocal microscope.The DUF582 Proteins of Chlamydia trachomatis Bind to Components of the ESCRT Machinery, Which Is Dispensable for Bacterial Growth In vitro.Biotic Host-Pathogen Interactions As Major Drivers of Plastid Endosymbiosis.One Face of Chlamydia trachomatis: The Infectious Elementary Body.The chlamydial OTU domain-containing protein ChlaOTU is an early type III secretion effector targeting ubiquitin and NDP52.Metabolic effectors secreted by bacterial pathogens: essential facilitators of plastid endosymbiosis?Chlamydia co-opts the rod shape-determining proteins MreB and Pbp2 for cell division.Identification of a family of effectors secreted by the type III secretion system that are conserved in pathogenic Chlamydiae.Production of reactive oxygen species is turned on and rapidly shut down in epithelial cells infected with Chlamydia trachomatisA directed screen for chlamydial proteins secreted by a type III mechanism identifies a translocated protein and numerous other new candidates.Conservation of the biochemical properties of IncA from Chlamydia trachomatis and Chlamydia caviae: oligomerization of IncA mediates interaction between facing membranes.Analysis of Chlamydia caviae entry sites and involvement of Cdc42 and Rac activity.Exploitation of host lipids by bacteria.When bugs meet cells. Conference: frontiers of cellular microbiology and cell biology.An alpha-helical signal in the cytosolic domain of the interleukin 2 receptor beta chain mediates sorting towards degradation after endocytosisCorrelation between Chlamydia pneumoniae detection from coronary angioplasty balloons and atherosclerosis severity.Development of a real-time PCR for the detection of Chlamydia psittaci.Re: Evidence for an association between Chlamydia psittaci and ocular adnexal lymphomas.Type III secretion system in Chlamydia species: identified members and candidates.Several weak signals in the cytosolic and transmembrane domains of the interleukin-2-receptor beta chain allow for its efficient endocytosis.Infection-driven activation of transglutaminase 2 boosts glucose uptake and hexosamine biosynthesis in epithelial cells
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