Published in J Virol on November 26, 2008
Molecular interactions in rotavirus assembly and uncoating seen by high-resolution cryo-EM. Proc Natl Acad Sci U S A (2009) 2.65
X-ray crystal structure of the rotavirus inner capsid particle at 3.8 A resolution. J Mol Biol (2010) 1.61
Structural insights into the coupling of virion assembly and rotavirus replication. Nat Rev Microbiol (2012) 1.30
Atomic resolution cryo electron microscopy of macromolecular complexes. Adv Protein Chem Struct Biol (2011) 1.27
Cryo-EM structure of a transcribing cypovirus. Proc Natl Acad Sci U S A (2012) 1.20
A rotavirus spike protein conformational intermediate binds lipid bilayers. J Virol (2009) 1.10
Assortment and packaging of the segmented rotavirus genome. Trends Microbiol (2010) 1.10
Rotavirus VP2 core shell regions critical for viral polymerase activation. J Virol (2011) 1.06
Shared and group-specific features of the rotavirus RNA polymerase reveal potential determinants of gene reassortment restriction. J Virol (2009) 1.05
VP5* rearranges when rotavirus uncoats. J Virol (2009) 1.04
Rotavirus non-structural proteins: structure and function. Curr Opin Virol (2012) 0.99
Mechanism of intraparticle synthesis of the rotavirus double-stranded RNA genome. J Biol Chem (2010) 0.97
Simian rotaviruses possess divergent gene constellations that originated from interspecies transmission and reassortment. J Virol (2009) 0.96
Analyses of subnanometer resolution cryo-EM density maps. Methods Enzymol (2010) 0.95
Effect of mutations in VP5 hydrophobic loops on rotavirus cell entry. J Virol (2010) 0.94
Principles of virus structural organization. Adv Exp Med Biol (2012) 0.94
Crystallographic Analysis of Rotavirus NSP2-RNA Complex Reveals Specific Recognition of 5' GG Sequence for RTPase Activity. J Virol (2012) 0.86
Structural basis of glycan interaction in gastroenteric viral pathogens. Curr Opin Virol (2014) 0.85
In silico study of rotavirus VP7 surface accessible conserved regions for antiviral drug/vaccine design. PLoS One (2012) 0.81
Cross-linking of rotavirus outer capsid protein VP7 by antibodies or disulfides inhibits viral entry. J Virol (2011) 0.81
Regulation of rotavirus polymerase activity by inner capsid proteins. Curr Opin Virol (2014) 0.80
Probing the sites of interactions of rotaviral proteins involved in replication. J Virol (2014) 0.79
Relative roles of GM1 ganglioside, N-acylneuraminic acids, and α2β1 integrin in mediating rotavirus infection. J Virol (2014) 0.79
Electron microscopic analysis of rotavirus assembly-replication intermediates. Virology (2015) 0.79
Mutational analysis of residues involved in nucleotide and divalent cation stabilization in the rotavirus RNA-dependent RNA polymerase catalytic pocket. Virology (2012) 0.78
On the effect of thermodynamic equilibrium on the assembly efficiency of complex multi-layered virus-like particles (VLP): the case of rotavirus VLP. PLoS Comput Biol (2012) 0.77
Comparative efficacy of fluorescent antibody test, immunoperoxidase test and enzyme linked immuno sorbent assay in detection of rotavirus in cell culture. Virusdisease (2014) 0.75
Temperature-sensitive Lesion in the N-terminal Domain of the Rotavirus Polymerase Affects its Intracellular Localization and Enzymatic Activity. J Virol (2017) 0.75
Electron microscopic imaging revealed the flexible filamentous structure of the cell attachment protein P2 of Rice dwarf virus located around the icosahedral 5-fold axes. J Biochem (2015) 0.75
Rhesus rotavirus VP6 regulates ERK-dependent calcium influx in cholangiocytes. Virology (2016) 0.75
Rotavirus genome replication: Some assembly required. PLoS Pathog (2017) 0.75
Heterodimers as the Structural Unit of the T=1 Capsid of the Fungal Double-Stranded RNA Rosellinia necatrix Quadrivirus 1. J Virol (2016) 0.75
Seroprevalence of Rotavirus infection in pig population of Arunachal Pradesh. Vet World (2016) 0.75
Fusion of the mouse IgG1 Fc domain to the VHH fragment (ARP1) enhances protection in a mouse model of rotavirus. Sci Rep (2016) 0.75
The SRL peptide of Rhesus Rotavirus VP4 protein governs cholangiocyte infection and the murine model of biliary atresia. Hepatology (2016) 0.75
A point mutation in the Rhesus rotavirus VP4 protein generated through rotavirus reverse genetics system attenuates the murine model of biliary atresia. J Virol (2017) 0.75
Coot: model-building tools for molecular graphics. Acta Crystallogr D Biol Crystallogr (2004) 227.01
EMAN: semiautomated software for high-resolution single-particle reconstructions. J Struct Biol (1999) 27.52
Visualizing density maps with UCSF Chimera. J Struct Biol (2006) 5.75
Near-atomic resolution using electron cryomicroscopy and single-particle reconstruction. Proc Natl Acad Sci U S A (2008) 5.33
Proteolytic enhancement of rotavirus infectivity: molecular mechanisms. J Virol (1981) 4.87
Identification of the two rotavirus genes determining neutralization specificities. J Virol (1986) 4.35
Structure of the reovirus core at 3.6 A resolution. Nature (2000) 4.28
The atomic structure of the bluetongue virus core. Nature (1998) 4.27
Three-dimensional structure of rotavirus. J Mol Biol (1988) 3.79
Bridging the information gap: computational tools for intermediate resolution structure interpretation. J Mol Biol (2001) 3.29
Molecular basis of rotavirus virulence: role of gene segment 4. J Virol (1986) 3.08
Three-dimensional structure of rhesus rotavirus by cryoelectron microscopy and image reconstruction. J Cell Biol (1990) 2.83
Localization of VP4 neutralization sites in rotavirus by three-dimensional cryo-electron microscopy. Nature (1990) 2.77
Infectious rotavirus enters cells by direct cell membrane penetration, not by endocytosis. J Virol (1988) 2.72
Identification of secondary structure elements in intermediate-resolution density maps. Structure (2007) 2.60
The atomic structure of rice dwarf virus reveals the self-assembly mechanism of component proteins. Structure (2003) 2.53
Visualization of ordered genomic RNA and localization of transcriptional complexes in rotavirus. Nature (1996) 2.45
Atomic structure of the major capsid protein of rotavirus: implications for the architecture of the virion. EMBO J (2001) 2.43
The rhesus rotavirus VP4 sialic acid binding domain has a galectin fold with a novel carbohydrate binding site. EMBO J (2002) 2.41
Structural rearrangements in the membrane penetration protein of a non-enveloped virus. Nature (2004) 2.05
Role of VP3 in human rotavirus internalization after target cell attachment via VP7. J Virol (1988) 2.01
Electron cryomicroscopy and bioinformatics suggest protein fold models for rice dwarf virus. Nat Struct Biol (2001) 1.99
Three-dimensional visualization of the rotavirus hemagglutinin structure. Cell (1993) 1.95
Three-dimensional structure of the rotavirus haemagglutinin VP4 by cryo-electron microscopy and difference map analysis. EMBO J (1994) 1.90
Rotavirus contains integrin ligand sequences and a disintegrin-like domain that are implicated in virus entry into cells. Proc Natl Acad Sci U S A (1997) 1.82
Three-dimensional structural analysis of recombinant rotavirus-like particles with intact and amino-terminal-deleted VP2: implications for the architecture of the VP2 capsid layer. J Virol (1997) 1.81
The rhesus rotavirus outer capsid protein VP4 functions as a hemagglutinin and is antigenically conserved when expressed by a baculovirus recombinant. J Virol (1989) 1.80
Integrins alpha2beta1 and alpha4beta1 can mediate SA11 rotavirus attachment and entry into cells. J Virol (2000) 1.72
Trypsin cleavage stabilizes the rotavirus VP4 spike. J Virol (2001) 1.68
Trypsin activation pathway of rotavirus infectivity. J Virol (1996) 1.63
Integrin alpha(v)beta(3) mediates rotavirus cell entry. Proc Natl Acad Sci U S A (2000) 1.56
Applications of a bilateral denoising filter in biological electron microscopy. J Struct Biol (2003) 1.50
Rotavirus capsid protein VP5* permeabilizes membranes. J Virol (1999) 1.42
Selective membrane permeabilization by the rotavirus VP5* protein is abrogated by mutations in an internal hydrophobic domain. J Virol (2000) 1.40
Localization of membrane permeabilization and receptor binding sites on the VP4 hemagglutinin of rotavirus: implications for cell entry. J Mol Biol (2001) 1.38
Cleavage of rhesus rotavirus VP4 after arginine 247 is essential for rotavirus-like particle-induced fusion from without. J Virol (1998) 1.27
Pathogenesis of rotavirus gastroenteritis. Novartis Found Symp (2001) 1.20
Integrin alpha2beta1 mediates the cell attachment of the rotavirus neuraminidase-resistant variant nar3. Virology (2000) 1.16
A rotavirus vaccine for prevention of severe diarrhoea of infants and young children: development, utilization and withdrawal. Novartis Found Symp (2001) 1.10
Alternative intermolecular contacts underlie the rotavirus VP5* two- to three-fold rearrangement. EMBO J (2006) 1.06
Semi-automated icosahedral particle reconstruction at sub-nanometer resolution. J Struct Biol (2001) 1.05
pH-induced conformational change of the rotavirus VP4 spike: implications for cell entry and antibody neutralization. J Virol (2005) 0.99
The reversible condensation and expansion of the rotavirus genome. Proc Natl Acad Sci U S A (2001) 0.98
Immunogenicity of a bovine rotavirus glycoprotein fragment. J Virol (1985) 0.91
Membrane binding and endoplasmic reticulum retention sequences of rotavirus VP7 are distinct: role of carboxy-terminal and other residues in membrane binding. J Virol (1995) 0.77
EMAN2: an extensible image processing suite for electron microscopy. J Struct Biol (2006) 14.70
Nanoparticle-mediated cellular response is size-dependent. Nat Nanotechnol (2008) 8.23
Norovirus gastroenteritis. N Engl J Med (2009) 7.66
Norwalk virus infection and disease is associated with ABO histo-blood group type. J Infect Dis (2002) 5.09
Laboratory efforts to cultivate noroviruses. J Gen Virol (2004) 4.41
Outcome of the first electron microscopy validation task force meeting. Structure (2012) 4.35
Hierarchical self-assembly of DNA into symmetric supramolecular polyhedra. Nature (2008) 3.92
Uniformity of rotavirus strain nomenclature proposed by the Rotavirus Classification Working Group (RCWG). Arch Virol (2011) 3.87
Norovirus vaccine against experimental human Norwalk Virus illness. N Engl J Med (2011) 3.78
Norwalk virus shedding after experimental human infection. Emerg Infect Dis (2008) 3.70
Backbone structure of the infectious epsilon15 virus capsid revealed by electron cryomicroscopy. Nature (2008) 3.54
De novo backbone trace of GroEL from single particle electron cryomicroscopy. Structure (2008) 3.41
Multistage nanoparticle delivery system for deep penetration into tumor tissue. Proc Natl Acad Sci U S A (2011) 3.34
EMDataBank.org: unified data resource for CryoEM. Nucleic Acids Res (2010) 3.32
Norwalk virus-like particle hemagglutination by binding to h histo-blood group antigens. J Virol (2003) 3.15
Refinement of protein structures into low-resolution density maps using rosetta. J Mol Biol (2009) 2.94
Mechanism of folding chamber closure in a group II chaperonin. Nature (2010) 2.85
Norovirus disease: changing epidemiology and host susceptibility factors. Trends Microbiol (2004) 2.83
Recommendations for the classification of group A rotaviruses using all 11 genomic RNA segments. Arch Virol (2008) 2.77
Coat protein fold and maturation transition of bacteriophage P22 seen at subnanometer resolutions. Nat Struct Biol (2003) 2.76
Common ancestry of herpesviruses and tailed DNA bacteriophages. J Virol (2005) 2.60
Atomic resolution structural characterization of recognition of histo-blood group antigens by Norwalk virus. Proc Natl Acad Sci U S A (2008) 2.54
Rotavirus antigenaemia and viraemia: a common event? Lancet (2003) 2.51
Determination of the 50% human infectious dose for Norwalk virus. J Infect Dis (2013) 2.50
The epidemiologic and clinical importance of norovirus infection. Gastroenterol Clin North Am (2006) 2.49
The 3' end of Norwalk virus mRNA contains determinants that regulate the expression and stability of the viral capsid protein VP1: a novel function for the VP2 protein. J Virol (2003) 2.38
Structural requirements for the assembly of Norwalk virus-like particles. J Virol (2002) 2.38
Norwalk virus infection associates with secretor status genotyped from sera. J Med Virol (2005) 2.34
Cryo-EM asymmetric reconstruction of bacteriophage P22 reveals organization of its DNA packaging and infecting machinery. Structure (2006) 2.26
Serological correlate of protection against norovirus-induced gastroenteritis. J Infect Dis (2010) 2.21
4.0-A resolution cryo-EM structure of the mammalian chaperonin TRiC/CCT reveals its unique subunit arrangement. Proc Natl Acad Sci U S A (2010) 2.17
Electron cryomicroscopy of biological machines at subnanometer resolution. Structure (2005) 2.15
Structural changes in a marine podovirus associated with release of its genome into Prochlorococcus. Nat Struct Mol Biol (2010) 2.12
X-ray structure of a native calicivirus: structural insights into antigenic diversity and host specificity. Proc Natl Acad Sci U S A (2006) 2.09
Refinement of protein structures by iterative comparative modeling and CryoEM density fitting. J Mol Biol (2006) 2.06
Rotaviruses: from pathogenesis to vaccination. Gastroenterology (2009) 2.05
Protective effect of natural rotavirus infection in an Indian birth cohort. N Engl J Med (2011) 2.04
Structural basis for scaffolding-mediated assembly and maturation of a dsDNA virus. Proc Natl Acad Sci U S A (2011) 2.03
Averaging tens to hundreds of icosahedral particle images to resolve protein secondary structure elements using a Multi-Path Simulated Annealing optimization algorithm. J Struct Biol (2007) 1.90
Humoral, mucosal, and cellular immune responses to oral Norwalk virus-like particles in volunteers. Clin Immunol (2003) 1.89
Neonatal infection with G10P[11] rotavirus did not confer protection against subsequent rotavirus infection in a community cohort in Vellore, South India. J Infect Dis (2007) 1.83
Disruption of PTEN coupling with 5-HT2C receptors suppresses behavioral responses induced by drugs of abuse. Nat Med (2006) 1.82
Inter- and intragenus structural variations in caliciviruses and their functional implications. J Virol (2004) 1.79
X-ray structure of NS1 from a highly pathogenic H5N1 influenza virus. Nature (2008) 1.77
4.4 Å cryo-EM structure of an enveloped alphavirus Venezuelan equine encephalitis virus. EMBO J (2011) 1.77
Noroviral P particle: structure, function and applications in virus-host interaction. Virology (2008) 1.75
X-ray structure of influenza virus NS1 effector domain. Nat Struct Mol Biol (2006) 1.74
Evolutionary trace residues in noroviruses: importance in receptor binding, antigenicity, virion assembly, and strain diversity. J Virol (2005) 1.71
A 9 angstroms single particle reconstruction from CCD captured images on a 200 kV electron cryomicroscope. J Struct Biol (2004) 1.70
Subnanometer-resolution electron cryomicroscopy-based domain models for the cytoplasmic region of skeletal muscle RyR channel. Proc Natl Acad Sci U S A (2008) 1.68
Structural characterization of components of protein assemblies by comparative modeling and electron cryo-microscopy. J Struct Biol (2005) 1.67
Norwalk virus RNA is infectious in mammalian cells. J Virol (2007) 1.66
Selective inhibitors of histone methyltransferase DOT1L: design, synthesis, and crystallographic studies. J Am Chem Soc (2011) 1.66
Cell attachment protein VP8* of a human rotavirus specifically interacts with A-type histo-blood group antigen. Nature (2012) 1.65
Biodegradable quantum dot nanocomposites enable live cell labeling and imaging of cytoplasmic targets. Nano Lett (2008) 1.64
Norwalk virus-specific binding to oyster digestive tissues. Emerg Infect Dis (2006) 1.63
The mRNA expression of SATB1 and SATB2 in human breast cancer. Cancer Cell Int (2009) 1.62
Compact biocompatible quantum dots via RAFT-mediated synthesis of imidazole-based random copolymer ligand. J Am Chem Soc (2010) 1.60
Conformational flexibility facilitates self-assembly of complex DNA nanostructures. Proc Natl Acad Sci U S A (2008) 1.60
A potent and selective histamine H4 receptor antagonist with anti-inflammatory properties. J Pharmacol Exp Ther (2004) 1.58
Replication and packaging of Norwalk virus RNA in cultured mammalian cells. Proc Natl Acad Sci U S A (2005) 1.56
Identification of Genogroup I and Genogroup II broadly reactive epitopes on the norovirus capsid. J Virol (2005) 1.53
Structural analysis of histo-blood group antigen binding specificity in a norovirus GII.4 epidemic variant: implications for epochal evolution. J Virol (2011) 1.53
Comparative study of the epidemiology of rotavirus in children from a community-based birth cohort and a hospital in South India. J Clin Microbiol (2006) 1.51
Applications of a bilateral denoising filter in biological electron microscopy. J Struct Biol (2003) 1.50
Epidemiology of human noroviruses and updates on vaccine development. Curr Opin Gastroenterol (2014) 1.49
Seroepidemiology of norovirus-associated travelers' diarrhea. J Travel Med (2014) 1.43
Rotavirus viremia and extraintestinal viral infection in the neonatal rat model. J Virol (2006) 1.43
Vaccine-acquired rotavirus in infants with severe combined immunodeficiency. N Engl J Med (2010) 1.43
Initial interaction of rotavirus strains with N-acetylneuraminic (sialic) acid residues on the cell surface correlates with VP4 genotype, not species of origin. J Virol (2002) 1.42
Cross-reactivity among several recombinant calicivirus virus-like particles (VLPs) with monoclonal antibodies obtained from mice immunized orally with one type of VLP. J Clin Microbiol (2002) 1.40
Burden of illness in the first 3 years of life in an Indian slum. J Trop Pediatr (2009) 1.40
Norwalk virus does not replicate in human macrophages or dendritic cells derived from the peripheral blood of susceptible humans. Virology (2010) 1.40
Norovirus P particle, a novel platform for vaccine development and antibody production. J Virol (2010) 1.39
X-ray crystallographic structure of the Norwalk virus protease at 1.5-A resolution. J Virol (2006) 1.37
Genome sequence, structural proteins, and capsid organization of the cyanophage Syn5: a "horned" bacteriophage of marine synechococcus. J Mol Biol (2007) 1.37
Inhibition of rotavirus replication by a non-neutralizing, rotavirus VP6-specific IgA mAb. J Clin Invest (2002) 1.34
Structure of the herpesvirus major capsid protein. EMBO J (2003) 1.33
Superparamagnetic iron oxide nanoparticles as MRI contrast agents for non-invasive stem cell labeling and tracking. Theranostics (2013) 1.33
Antibody prevalence and titer to norovirus (genogroup II) correlate with secretor (FUT2) but not with ABO phenotype or Lewis (FUT3) genotype. J Infect Dis (2006) 1.32
Emerging themes in rotavirus cell entry, genome organization, transcription and replication. Virus Res (2004) 1.31
Rotavirus proteins: structure and assembly. Curr Top Microbiol Immunol (2006) 1.30
Zinc biofortification of cereals: rice differs from wheat and barley. Trends Plant Sci (2009) 1.30
Autophagy hijacked through viroporin-activated calcium/calmodulin-dependent kinase kinase-β signaling is required for rotavirus replication. Proc Natl Acad Sci U S A (2012) 1.30
The first potent and selective non-imidazole human histamine H4 receptor antagonists. J Med Chem (2003) 1.28
Dual neuroprotective signaling mediated by downregulating two distinct phosphatase activities of PTEN. J Neurosci (2004) 1.28
Deriving folds of macromolecular complexes through electron cryomicroscopy and bioinformatics approaches. Curr Opin Struct Biol (2002) 1.27
Stem cell-derived human intestinal organoids as an infection model for rotaviruses. MBio (2012) 1.27