Rhinovirus-stabilizing activity of artificial VLDL-receptor variants defines a new mechanism for virus neutralization by soluble receptors.

PubWeight™: 0.88‹?›

🔗 View Article (PMID 16213497)

Published in FEBS Lett on September 27, 2005

Authors

Andreas Nicodemou1, Martina Petsch, Tunde Konecsni, Leopold Kremser, Ernst Kenndler, José M Casasnovas, Dieter Blaas

Author Affiliations

1: Institute of Analytical Chemistry, University of Vienna, Austria.

Articles by these authors

X-ray structure of a minor group human rhinovirus bound to a fragment of its cellular receptor protein. Nat Struct Mol Biol (2004) 2.69

Structures of T Cell immunoglobulin mucin receptors 1 and 2 reveal mechanisms for regulation of immune responses by the TIM receptor family. Immunity (2007) 2.46

Structures of T cell immunoglobulin mucin protein 4 show a metal-Ion-dependent ligand binding site where phosphatidylserine binds. Immunity (2007) 2.29

T cell/transmembrane, Ig, and mucin-3 allelic variants differentially recognize phosphatidylserine and mediate phagocytosis of apoptotic cells. J Immunol (2010) 1.79

Optimization and evaluation of a sheathless capillary electrophoresis-electrospray ionization mass spectrometry platform for peptide analysis: comparison to liquid chromatography-electrospray ionization mass spectrometry. Anal Chem (2011) 1.69

Structure of the measles virus hemagglutinin bound to the CD46 receptor. Nat Struct Mol Biol (2009) 1.58

A new, simple method for linking of antibodies to atomic force microscopy tips. Bioconjug Chem (2007) 1.48

The concerted conformational changes during human rhinovirus 2 uncoating. Mol Cell (2002) 1.44

The minor receptor group of human rhinovirus (HRV) includes HRV23 and HRV25, but the presence of a lysine in the VP1 HI loop is not sufficient for receptor binding. J Virol (2005) 1.44

Adenovirus type 11 binding alters the conformation of its receptor CD46. Nat Struct Mol Biol (2007) 1.41

Uncoating of human rhinoviruses. Rev Med Virol (2010) 1.36

Cryoelectron microscopy analysis of the structural changes associated with human rhinovirus type 14 uncoating. J Virol (2004) 1.35

Structural bases of coronavirus attachment to host aminopeptidase N and its inhibition by neutralizing antibodies. PLoS Pathog (2012) 1.34

Sequence and structure of human rhinoviruses reveal the basis of receptor discrimination. J Virol (2003) 1.29

Distinct kinetics for binding of the CD46 and SLAM receptors to overlapping sites in the measles virus hemagglutinin protein. J Biol Chem (2002) 1.28

Human rhinovirus type 2 is internalized by clathrin-mediated endocytosis. J Virol (2003) 1.25

Insights into minor group rhinovirus uncoating: the X-ray structure of the HRV2 empty capsid. PLoS Pathog (2012) 1.25

Induction of autophagy does not affect human rhinovirus type 2 production. J Virol (2007) 1.25

Multiple receptors involved in human rhinovirus attachment to live cells. Proc Natl Acad Sci U S A (2008) 1.23

Antibiotic abscess penetration: fosfomycin levels measured in pus and simulated concentration-time profiles. Antimicrob Agents Chemother (2005) 1.22

Structure of the extracellular portion of CD46 provides insights into its interactions with complement proteins and pathogens. PLoS Pathog (2010) 1.20

Conformational changes, plasma membrane penetration, and infection by human rhinovirus type 2: role of receptors and low pH. J Virol (2003) 1.20

Receptor priming of major group human rhinoviruses for uncoating and entry at mild low-pH environments. J Virol (2003) 1.15

Opening of size-selective pores in endosomes during human rhinovirus serotype 2 in vivo uncoating monitored by single-organelle flow analysis. J Virol (2005) 1.11

Structural analysis of human rhinovirus complexed with ICAM-1 reveals the dynamics of receptor-mediated virus uncoating. J Virol (2003) 1.09

Contribution of N-linked glycans to the conformation and function of intercellular adhesion molecules (ICAMs). J Biol Chem (2004) 1.05

Capillary electrophoresis of biological particles: viruses, bacteria, and eukaryotic cells. Electrophoresis (2004) 1.05

A cellular receptor of human rhinovirus type 2, the very-low-density lipoprotein receptor, binds to two neighboring proteins of the viral capsid. J Virol (2003) 1.04

Wortmannin delays transfer of human rhinovirus serotype 2 to late endocytic compartments. Biochem Biophys Res Commun (2006) 1.01

Candida albicans beta-glucan exposure is controlled by the fungal CEK1-mediated mitogen-activated protein kinase pathway that modulates immune responses triggered through dectin-1. Infect Immun (2010) 1.00

Species-specific receptor recognition by a minor-group human rhinovirus (HRV): HRV serotype 1A distinguishes between the murine and the human low-density lipoprotein receptor. J Virol (2002) 0.99

Attachment of VLDL receptors to an icosahedral virus along the 5-fold symmetry axis: multiple binding modes evidenced by fluorescence correlation spectroscopy. Biochemistry (2007) 0.98

In situ assembly of macromolecular complexes triggered by light. Proc Natl Acad Sci U S A (2010) 0.96

Human rhinovirus type 89 variants use heparan sulfate proteoglycan for cell attachment. J Virol (2005) 0.96

Comparing and combining capillary electrophoresis electrospray ionization mass spectrometry and nano-liquid chromatography electrospray ionization mass spectrometry for the characterization of post-translationally modified histones. Mol Cell Proteomics (2013) 0.96

Antigenic modules in the N-terminal S1 region of the transmissible gastroenteritis virus spike protein. J Gen Virol (2011) 0.94

Gas-phase electrophoretic molecular mobility analysis of size and stoichiometry of complexes of a common cold virus with antibody and soluble receptor molecules. Anal Chem (2008) 0.94

Dynamic force microscopy imaging of native membranes. Ultramicroscopy (2003) 0.94

Liposomal nanocontainers as models for viral infection: monitoring viral genomic RNA transfer through lipid membranes. J Virol (2011) 0.94

Human rhinovirus 14 enters rhabdomyosarcoma cells expressing icam-1 by a clathrin-, caveolin-, and flotillin-independent pathway. J Virol (2010) 0.90

Neutralization of a common cold virus by concatemers of the third ligand binding module of the VLDL-receptor strongly depends on the number of modules. Virology (2005) 0.89

Analysis of liposomes by capillary electrophoresis and their use as carrier in electrokinetic chromatography. J Chromatogr B Analyt Technol Biomed Life Sci (2006) 0.89

Human rhinovirus type 54 infection via heparan sulfate is less efficient and strictly dependent on low endosomal pH. J Virol (2007) 0.89

Monitoring RNA release from human rhinovirus by dynamic force microscopy. J Virol (2004) 0.89

Viral uncoating is directional: exit of the genomic RNA in a common cold virus starts with the poly-(A) tail at the 3'-end. PLoS Pathog (2013) 0.88

Uncoating of common cold virus is preceded by RNA switching as determined by X-ray and cryo-EM analyses of the subviral A-particle. Proc Natl Acad Sci U S A (2013) 0.88

Characterization of rhinovirus subviral A particles via capillary electrophoresis, electron microscopy and gas-phase electrophoretic mobility molecular analysis: Part I. Electrophoresis (2012) 0.87

Low pH-triggered beta-propeller switch of the low-density lipoprotein receptor assists rhinovirus infection. J Virol (2009) 0.86

Determination of duloxetine in human plasma by capillary electrophoresis with laser-induced fluorescence detection. J Chromatogr B Analyt Technol Biomed Life Sci (2009) 0.86

Fructose 1-phosphate is the preferred effector of the metabolic regulator Cra of Pseudomonas putida. J Biol Chem (2011) 0.86

Labeling of capsid proteins and genomic RNA of human rhinovirus with two different fluorescent dyes for selective detection by capillary electrophoresis. Anal Chem (2004) 0.86

Entry of a heparan sulphate-binding HRV8 variant strictly depends on dynamin but not on clathrin, caveolin, and flotillin. Virology (2011) 0.86

Mimicking early events of virus infection: capillary electrophoretic analysis of virus attachment to receptor-decorated liposomes. Anal Chem (2007) 0.86

Determination of cationic mobilities and pKa values of 22 amino acids by capillary zone electrophoresis. Electrophoresis (2004) 0.85

Binding of fluorescent dye to genomic RNA inside intact human rhinovirus after viral capsid penetration investigated by capillary electrophoresis. Anal Chem (2004) 0.85

Temperature dependence of acidity constants, a tool to affect separation selectivity in capillary electrophoresis. J Chromatogr A (2006) 0.85

Productive entry pathways of human rhinoviruses. Adv Virol (2012) 0.85

Characterization of proteins from Spirulina platensis microalga using capillary electrophoresis-ion trap-mass spectrometry and capillary electrophoresis-time of flight-mass spectrometry. Electrophoresis (2005) 0.85

Stability of the endosomal scaffold protein LAMTOR3 depends on heterodimer assembly and proteasomal degradation. J Biol Chem (2013) 0.85

Twelve receptor molecules attach per viral particle of human rhinovirus serotype 2 via multiple modules. FEBS Lett (2004) 0.84

Fluorescence labeling of human rhinovirus capsid and analysis by capillary electrophoresis. Anal Chem (2004) 0.84

Minor group human rhinovirus-receptor interactions: geometry of multimodular attachment and basis of recognition. FEBS Lett (2008) 0.84

Human rhinovirus type 2-antibody complexes enter and infect cells via Fc-gamma receptor IIB1. J Virol (2004) 0.84

Sensitive and selective determination of glutathione in probiotic bacteria by capillary electrophoresis-laser induced fluorescence. Anal Bioanal Chem (2007) 0.84

Identification of the human rhinovirus serotype 1A binding site on the murine low-density lipoprotein receptor by using human-mouse receptor chimeras. J Virol (2004) 0.84

Capillary electrophoresis of viruses, subviral particles and virus complexes. J Sep Sci (2007) 0.83

Dynamic force microscopy imaging of plasmid DNA and viral RNA. Biomaterials (2007) 0.83

Site of human rhinovirus RNA uncoating revealed by fluorescent in situ hybridization. J Virol (2009) 0.83

System zones in capillary zone electrophoresis. Electrophoresis (2004) 0.83

Specificity switching in virus-receptor complexes. Curr Opin Struct Biol (2009) 0.83

Virus-ligand interactions: identification and characterization of ligand binding by NMR spectroscopy. J Am Chem Soc (2003) 0.82

Chemosensors for viruses based on artificial immunoglobulin copies. Adv Mater (2010) 0.82

Characterization of glyco isoforms in plasma-derived human antithrombin by on-line capillary zone electrophoresis-electrospray ionization-quadrupole ion trap-mass spectrometry of the intact glycoproteins. Electrophoresis (2004) 0.82

Theoretical and empirical approaches to express the mobility of small ions in capillary electrophoresis. Electrophoresis (2006) 0.82

Influence of detergent additives on mobility of native and subviral rhinovirus particles in capillary electrophoresis. Electrophoresis (2006) 0.82

Nonneutralizing human rhinovirus serotype 2-specific monoclonal antibody 2G2 attaches to the region that undergoes the most dramatic changes upon release of the viral RNA. J Virol (2006) 0.81

Liposomal leakage induced by virus-derived peptides, viral proteins, and entire virions: rapid analysis by chip electrophoresis. Anal Chem (2010) 0.81

Electrophoretic mobilities of large organic ions in nonaqueous solvents: determination by capillary electrophoresis in propylene carbonate, N,N-dimethylformamide, N,N,-dimethylacetamide, acetonitrile and methanol. Electrophoresis (2002) 0.81

The Rhinovirus subviral a-particle exposes 3'-terminal sequences of its genomic RNA. J Virol (2014) 0.81

MALDI-MS tissue imaging identification of biliverdin reductase B overexpression in prostate cancer. J Proteomics (2013) 0.81

Visualization of single receptor molecules bound to human rhinovirus under physiological conditions. Structure (2005) 0.81

High-performance liquid chromatographic determination of Levetiracetam in human plasma: comparison of different sample clean-up procedures. Biomed Chromatogr (2004) 0.81

Guiding the location of nanoparticles into vesicular structures: a morphological study. Phys Chem Chem Phys (2007) 0.80