Norwalk virus shedding after experimental human infectionRotaviruses: from pathogenesis to vaccinationRotavirus architecture at subnanometer resolutionRotavirus vaccines and pathogenesis: 2008Rotavirus non-structural proteins: structure and functionStructural basis of glycan interaction in gastroenteric viral pathogensHuman Intestinal Enteroids: a New Model To Study Human Rotavirus Infection, Host Restriction, and PathophysiologypH-Induced Conformational Change of the Rotavirus VP4 Spike: Implications for Cell Entry and Antibody NeutralizationEvaluation of serum antibody responses against the rotavirus nonstructural protein NSP4 in children after rhesus rotavirus tetravalent vaccination or natural infection.Atomic resolution structural characterization of recognition of histo-blood group antigens by Norwalk virusStructural Analysis of Histo-Blood Group Antigen Binding Specificity in a Norovirus GII.4 Epidemic Variant: Implications for Epochal EvolutionCrystallographic Analysis of Rotavirus NSP2-RNA Complex Reveals Specific Recognition of 5' GG Sequence for RTPase ActivityStructural Basis of Substrate Specificity and Protease Inhibition in Norwalk VirusStructural Analysis of Determinants of Histo-Blood Group Antigen Binding Specificity in Genogroup I NorovirusesHuman mini-guts: new insights into intestinal physiology and host-pathogen interactionsSeroepidemiology of norovirus-associated travelers' diarrheaInhibition of cellular protein secretion by norwalk virus nonstructural protein p22 requires a mimic of an endoplasmic reticulum export signalReconciliation of rotavirus temperature-sensitive mutant collections and assignment of reassortment groups D, J, and K to genome segmentsAntiviral targets of human norovirusesHuman Sera Collected between 1979 and 2010 Possess Blocking-Antibody Titers to Pandemic GII.4 Noroviruses Isolated over Three Decades.Activation of the endoplasmic reticulum calcium sensor STIM1 and store-operated calcium entry by rotavirus requires NSP4 viroporin activity.Human Enteroids as a Model of Upper Small Intestinal Ion Transport Physiology and Pathophysiology.Rotavirus structural proteins and dsRNA are required for the human primary plasmacytoid dendritic cell IFNalpha responseHuman enteroids: preclinical models of non-inflammatory diarrhea.B-Cell Responses to Intramuscular Administration of a Bivalent Virus-Like Particle Human Norovirus Vaccine.An inside job: subversion of the host secretory pathway by intestinal pathogensB-cell and T-cell immune responses to experimental Helicobacter pylori infection in humans.Identification of Genogroup I and Genogroup II broadly reactive epitopes on the norovirus capsidReplication and packaging of Norwalk virus RNA in cultured mammalian cells.Vaccine-acquired rotavirus in infants with severe combined immunodeficiencyCross-reactivity among several recombinant calicivirus virus-like particles (VLPs) with monoclonal antibodies obtained from mice immunized orally with one type of VLPNorwalk virus does not replicate in human macrophages or dendritic cells derived from the peripheral blood of susceptible humans.Serological correlate of protection against norovirus-induced gastroenteritisInter- and intragenus structural variations in caliciviruses and their functional implicationsProtective effect of natural rotavirus infection in an Indian birth cohort.Development of a Gaussia luciferase-based human norovirus protease reporter system: cell type-specific profile of Norwalk virus protease precursors and evaluation of inhibitors.Plasmid-based human norovirus reverse genetics system produces reporter-tagged progeny virus containing infectious genomic RNA.Identification of human single-chain antibodies with broad reactivity for noroviruses.Group A rotavirus infection and age-dependent diarrheal disease in rats: a new animal model to study the pathophysiology of rotavirus infectionVLA-2 (alpha2beta1) integrin promotes rotavirus entry into cells but is not necessary for rotavirus attachment.
P50
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P50
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Mary K. Estes
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Mary K. Estes
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P31
P3388
P5380
P734
P735
P7859
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