نتایج جستجو برای: shiga

تعداد نتایج: 5634  

2002
Sjur Olsnes J. Edward Brown Ole W. Petersen Bo van Deurs

Evidence is presented that endocytosis is involved in the transport to the cytosol of the cytotoxin from Shigella dysenteriae 1, Shiga toxin, which acts by removal of a single adenine residue in 28-S ribosomal RNA. Inhibition of endocytosis by ATP depletion of the cells prevented toxin uptake. Exposure of HeLa $3 and Vero cells to toxin at low extracellular pH, where translocation to the cytoso...

2015
Molly Maitland Leeper MOLLY M. LEEPER Molly Leeper Molly M. Leeper

Molly M. Leeper Trends in Toxin Profiles of Human Shiga Toxin-Producing Escherchia coli (STEC) O157 Strains, United States, 1996-2008 (Under the direction of Dr. Karen Gieseker, faculty member) Shiga toxin-producing E. coli (STEC) cause diarrhea, hemorrhagic colitis, and hemolytic uremic syndrome (HUS). All STEC produce one or both of two Shiga toxins, Stx1 and Stx2. STEC strains that produce S...

Journal: :Journal of cell science 2010
Yoko Shiba Winfried Römer Gonzalo A Mardones Patricia V Burgos Christophe Lamaze Ludger Johannes

The retrograde transport route links early endosomes and the TGN. Several endogenous and exogenous cargo proteins use this pathway, one of which is the well-explored bacterial Shiga toxin. ADP-ribosylation factors (Arfs) are approximately 20 kDa GTP-binding proteins that are required for protein traffic at the level of the Golgi complex and early endosomes. In this study, we expressed mutants a...

2016
Luciana D’Alessio Alipio Pinto Adriana Cangelosi Patricia A. Geoghegan Carla Tironi-Farinati Gabriela J. Brener Jorge Goldstein

Shiga toxin producing Escherichia coli may damage the central nervous system before or concomitantly to manifested hemolytic-uremic syndrome symptoms. The cerebellum is frequently damaged during this syndrome, however, the deleterious effects of Shiga toxin 2 has never been integrally reported by ultrastructural, physiological and behavioral means. The aim of this study was to determine the cer...

Journal: :Applied and environmental microbiology 2012
Maite Muniesa Jens A Hammerl Stefan Hertwig Bernd Appel Harald Brüssow

In 2011, Germany experienced the largest outbreak with a Shiga toxin-producing Escherichia coli (STEC) strain ever recorded. A series of environmental and trace-back and trace-forward investigations linked sprout consumption with the disease, but fecal-oral transmission was also documented. The genome sequences of the pathogen revealed a clonal outbreak with enteroaggregative E. coli (EAEC). So...

Journal: :Journal of clinical microbiology 2014
Emily I Schindler Patricia Sellenriek Gregory A Storch Phillip I Tarr Carey-Ann D Burnham

The aim of this study was to identify the best practices for the detection of Shiga toxin-producing Escherichia coli (STEC) in children with diarrheal illness treated at a tertiary care center, i.e., sorbitol-MacConkey (SMAC) agar culture, enzyme immunoassay (EIA) for Shiga toxin, or the simultaneous use of both methods. STEC was detected in 100 of 14,997 stool specimens submitted for enteric c...

2017
Gian Marco Baranzoni Pina M Fratamico Gwang-Hee Kim Erin R Reichenberger Julie A Funk Shannon D Manning Joseph M Bosilevac

Shiga toxin-producing Escherichia coli (STEC) bacteria are foodborne pathogens that can be carried by various animals. The swine STEC population is partially composed of host-specific strains that are often not well characterized. In this work, the genome sequences of a number of swine STEC strains are presented.

2016
Sandra C. Lorenz Michael L. Kotewicz Maria Hoffmann Narjol Gonzalez-Escalona Markus Fischer Julie A. Kase

Shiga toxin-producing Escherichia coli (STEC) strains are important foodborne pathogens associated with human disease. Most disease-associated STEC strains carry the locus of enterocyte effacement (LEE); however, regularly LEE-negative STEC strains are recovered from ill patients. Few reference sequences are available for these isolate types. Here, we report here the complete genome sequences f...

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