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Tuesday, 21 May 2024
Category: Basic Science
Category:
Basic Science
Circularizing picornavirus genomes to rapidly obtain terminal sequence
The use of pyrosequencer-generated sequence-signatures to identifythe influenza B-lineage and the subclade of the B/Yamataga-lineageviruses from currently circulating human influenza B viruses
Next-generation sequencing technologies in diagnostic virology
West Nile virus infections in humans—Focus on Greece
Ecological and taxonomic variation among human RNA viruses
Zoonotic henipavirus transmission
JANEWAY’S IMMUNOBIOLOGY – IMMUNOBIOLOGY: THE IMMUNE SYSTEM
A COLOR ATLAS OF COMPARATIVE PATHOLOGY OF PULMONARY TUBERCULOSIS
Defensins: antimicrobial peptides of innate immunity
Regulation of nucleosome dynamics by histone modifications
Antimicrobial peptides of multicellular organisms
Mother-to-infant transmission of GB virus type C/HGV
Erratum: Rapid discrimination of oseltamivir-resistant 275Y and -susceptible 275H substitutions in the neuraminidase gene of pandemic influenza A/H1N1 2009 virus by duplex one-step RT-PCR assay
Rapid discrimination of oseltamivir-resistant 275Y and -susceptible 275H substitutions in the neuraminidase gene of pandemic influenza A/H1N1 2009 virus by duplex one-step RT-PCR assay
Rotavirus NSP4 Induces a Novel Vesicular Compartment Regulated by Calcium and Associated with Viroplasms
Ca2+ permeability of the plasma membrane induced by rotavirus infection in cultured cells is inhibited by tunicamycin and brefeldin A
NSP4 enterotoxin of rotavirus induces paracellular leakage in polarized epithelial cells.
Expression and purification of polyhistidine-tagged rotavirus NSP4 proteins in insect cells.
Oncosis in MA104 Cells Is Induced by Rotavirus Infection through an Increase in Intracellular Ca21 Concentration
The rotavirus nonstructural glycoprotein NSP4 possesses membrane destabilization activity.
Rotavirus Disrupts Calcium Homeostasis by NSP4 Viroporin Activity
Review Rotavirus NSP4: a multifunctional viral enterotoxin
Selective Depletion of Stored Calcium by Thapsigargin Blocks Rotavirus Maturation but Not the Cytopathic Effect
Silencing of Rotavirus NSP4 or VP7 Expression Reduces Alterations in Ca2
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