Tetraspanins in viral infections: a fundamental role in viral biology?
about
Hepatocyte permissiveness to Plasmodium infection is conveyed by a short and structurally conserved region of the CD81 large extracellular domainA role for CD81 on the late steps of HIV-1 replication in a chronically infected T cell lineDual function of CD81 in influenza virus uncoating and buddingTetraspanin CD151 mediates papillomavirus type 16 endocytosisInvolvement of Tetraspanin C189 in Cell-to-Cell Spreading of the Dengue Virus in C6/36 CellsCD81 Expression Is Important for the Permissiveness of Huh7 Cell Clones for Heterogeneous Hepatitis C Virus InfectionDissecting the role of putative CD81 binding regions of E2 in mediating HCV entry: Putative CD81 binding region 1 is not involved in CD81 bindingCD81 Is a Central Regulator of Cellular Events Required for Hepatitis C Virus Infection of Human HepatocytesHepatitis C Virus entry: the early steps in the viral replication cycleHuman immunodeficiency virus type 1 and influenza virus exit via different membrane microdomains.The evolution of vertebrate tetraspanins: gene loss, retention, and massive positive selection after whole genome duplications.Endothelial cell-driven regulation of CD9 or motility-related protein-1 expression in multiple myeloma cells within the murine 5T33MM model and myeloma patients.Proteomic and biochemical analysis of purified human immunodeficiency virus type 1 produced from infected monocyte-derived macrophages.Bioinformatic description of immunotherapy targets for pediatric T-cell leukemia and the impact of normal gene sets used for comparison.Egress of HSV-1 capsid requires the interaction of VP26 and a cellular tetraspanin membrane proteinMicrodomains in the membrane landscape shape antigen-presenting cell function.Lateral organization of membrane proteins: tetraspanins spin their web.Cooperative role for tetraspanins in adhesin-mediated attachment of bacterial species to human epithelial cellsDiminished metastasis in tetraspanin CD151-knockout mice.Retroviral env glycoprotein trafficking and incorporation into virions.Structural basis for tetraspanin functions as revealed by the cryo-EM structure of uroplakin complexes at 6-A resolution.Evolution and Structural Analyses of Glossina morsitans (Diptera; Glossinidae) Tetraspanins.A primate virus generates transformed human cells by fusion.Tetraspanins and vascular functions.Molecular cloning, sequence characterization and expression analysis of a CD63 homologue from the coleopteran beetle, Tenebrio molitor.CD82 endocytosis and cholesterol-dependent reorganization of tetraspanin webs and lipid rafts.CD81-receptor associations--impact for hepatitis C virus entry and antiviral therapies.Exosome mimetics: a novel class of drug delivery systems.Mechanisms of enhanced HIV spread through T-cell virological synapses.Vpu is the main determinant for tetraspanin downregulation in HIV-1-infected cells.Comparison of envelope 2 CD81 binding regions in PBMC-derived versus serum-derived hepatitis C virus isolates: higher conservation of CD81 region 2 in PBMC isolates.CD81 expression for discrimination between sustained virologic response and relapse in patients with chronic hepatitis C.Normal muscle regeneration requires tight control of muscle cell fusion by tetraspanins CD9 and CD81.Molecular characterization of tsetse's proboscis and its response to Trypanosoma congolense infection.Distinct roles for tetraspanins CD9, CD63 and CD81 in the formation of multinucleated giant cells.Possible new targets for GPCR modulation: allosteric interactions, plasma membrane domains, intercellular transfer and epigenetic mechanisms.A prospective study of T- and B-lymphocyte subpopulations, CD81 expression levels on B cells and regulatory CD4(+) CD25(+) CD127(low/-) FoxP3(+) T cells in patients with chronic HCV infection during pegylated interferon-alpha2a plus ribavirin treatmGenetic Characterization of the Fish Piaractus brachypomus by Microsatellites Derived from Transcriptome Sequencing.Quantitative proteomics by 2-DE, 16O/18O labelling and linear ion trap mass spectrometry analysis of lymph nodes from piglets inoculated by porcine circovirus type 2
P2860
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P2860
Tetraspanins in viral infections: a fundamental role in viral biology?
description
2005 nî lūn-bûn
@nan
2005 թուականի Սեպտեմբերին հրատարակուած գիտական յօդուած
@hyw
2005 թվականի սեպտեմբերին հրատարակված գիտական հոդված
@hy
2005年の論文
@ja
2005年論文
@yue
2005年論文
@zh-hant
2005年論文
@zh-hk
2005年論文
@zh-mo
2005年論文
@zh-tw
2005年论文
@wuu
name
Tetraspanins in Viral Infections: a Fundamental Role in Viral Biology?
@nl
Tetraspanins in viral infections: a fundamental role in viral biology?
@ast
Tetraspanins in viral infections: a fundamental role in viral biology?
@en
type
label
Tetraspanins in Viral Infections: a Fundamental Role in Viral Biology?
@nl
Tetraspanins in viral infections: a fundamental role in viral biology?
@ast
Tetraspanins in viral infections: a fundamental role in viral biology?
@en
prefLabel
Tetraspanins in Viral Infections: a Fundamental Role in Viral Biology?
@nl
Tetraspanins in viral infections: a fundamental role in viral biology?
@ast
Tetraspanins in viral infections: a fundamental role in viral biology?
@en
P2860
P50
P1433
P1476
Tetraspanins in viral infections: a fundamental role in viral biology?
@en
P2093
P2860
P304
10839-10851
P356
10.1128/JVI.79.17.10839-10851.2005
P577
2005-09-01T00:00:00Z