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P50 | author | Christiane Wobus | Q42614228 |
Stefan Taube | Q59661611 | ||
Jeffrey W Perry | Q64385501 | ||
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Entry of feline calicivirus is dependent on clathrin-mediated endocytosis and acidification in endosomes | Q24674235 | ||
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Bioinformatic and functional analysis of RNA secondary structure elements among different genera of human and animal caliciviruses | Q27486048 | ||
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Virus entry: open sesame | Q29619349 | ||
Caveolar endocytosis of simian virus 40 reveals a new two-step vesicular-transport pathway to the ER | Q29620552 | ||
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One hundred years of poliovirus pathogenesis | Q33992344 | ||
Development of a microsphere-based serologic multiplexed fluorescent immunoassay and a reverse transcriptase PCR assay to detect murine norovirus 1 infection in mice | Q34072459 | ||
VPg of murine norovirus binds translation initiation factors in infected cells | Q34691492 | ||
Cleavage map and proteolytic processing of the murine norovirus nonstructural polyprotein in infected cells | Q35023930 | ||
Murine norovirus 1 infection is associated with histopathological changes in immunocompetent hosts, but clinical disease is prevented by STAT1-dependent interferon responses | Q35785067 | ||
Recovery of infectious murine norovirus using pol II-driven expression of full-length cDNA. | Q35865077 | ||
Murine noroviruses comprising a single genogroup exhibit biological diversity despite limited sequence divergence | Q36099017 | ||
Murine norovirus: a model system to study norovirus biology and pathogenesis | Q36477975 | ||
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Use of murine norovirus as a surrogate to evaluate resistance of human norovirus to disinfectants. | Q36672720 | ||
Penetration of nonenveloped viruses into the cytoplasm | Q36800410 | ||
Vesicular stomatitis virus M protein in the nuclei of infected cells | Q36882802 | ||
Differential role for low pH and cathepsin-mediated cleavage of the viral spike protein during entry of serotype II feline coronaviruses | Q36986553 | ||
In vitro cell culture infectivity assay for human noroviruses | Q37302827 | ||
Transmissible gastroenteritis | Q39234954 | ||
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Mouse polyomavirus enters early endosomes, requires their acidic pH for productive infection, and meets transferrin cargo in Rab11-positive endosomes. | Q40292963 | ||
A novel CD4-CD8alpha+CD205+CD11b- murine spleen dendritic cell line: establishment, characterization and functional analysis in a model of vaccination to toxoplasmosis | Q40365184 | ||
Coxsackievirus B3 replication and persistence in intestinal cells from mice infected orally and in the human CaCo-2 cell line | Q40521719 | ||
Laboratory efforts to cultivate noroviruses | Q40600126 | ||
Cathepsin S supports acid-independent infection by some reoviruses | Q40608252 | ||
Detection of murine norovirus 1 by using plaque assay, transfection assay, and real-time reverse transcription-PCR before and after heat exposure | Q41910813 | ||
The pathway of feline calicivirus entry. | Q41933990 | ||
Experimental infection of young rabbits with a rabbit enteric coronavirus | Q42574697 | ||
Genetic diversity and recombination of murine noroviruses in immunocompromised mice | Q42622059 | ||
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Newcastle disease virus may enter cells by caveolae-mediated endocytosis | Q45407925 | ||
Biological Properties of Norwalk Agent of Acute Infectious Nonbacterial Gastroenteritis | Q46220282 | ||
Surrogates for the study of norovirus stability and inactivation in the environment: aA comparison of murine norovirus and feline calicivirus. | Q51099765 | ||
Caliciviruses Differ in Their Functional Requirements for eIF4F Components | Q56787207 | ||
Enterovirus replication in porcine ileal explants | Q69807682 | ||
Intestinal M Cells: A Pathway for Entry of Reovirus into the Host | Q72884912 | ||
P433 | issue | 1 | |
P921 | main subject | dendritic cell | Q506253 |
norovirus | Q1142751 | ||
P304 | page(s) | 125-129 | |
P577 | publication date | 2009-03-14 | |
P1433 | published in | Virus Research | Q15749215 |
P1476 | title | Murine norovirus-1 entry into permissive macrophages and dendritic cells is pH-independent | |
P478 | volume | 143 |
Q28481001 | Antiviral activity of a small molecule deubiquitinase inhibitor occurs via induction of the unfolded protein response |
Q39038924 | Characterization of the chemokine response of RAW264.7 cells to infection by murine norovirus. |
Q42278850 | Comparing human norovirus surrogates: murine norovirus and Tulane virus |
Q37062340 | Current tools for norovirus drug discovery |
Q39717486 | Endocytosis of murine norovirus 1 into murine macrophages is dependent on dynamin II and cholesterol |
Q34146583 | Endosomal acidification and cathepsin L activity is required for calicivirus replication. |
Q64104148 | Glycolysis Is an Intrinsic Factor for Optimal Replication of a Norovirus |
Q37945203 | Glycosphingolipids as receptors for non-enveloped viruses |
Q27660321 | High-Resolution X-Ray Structure and Functional Analysis of the Murine Norovirus 1 Capsid Protein Protruding Domain |
Q34390421 | High-resolution functional profiling of the norovirus genome |
Q38269752 | Inactivation of norovirus and surrogates by natural phytochemicals and bioactive substances |
Q35868072 | Mouse norovirus 1 utilizes the cytoskeleton network to establish localization of the replication complex proximal to the microtubule organizing center |
Q39094216 | Murine norovirus transcytosis across an in vitro polarized murine intestinal epithelial monolayer is mediated by M-like cells |
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Q58463705 | Porcine sapovirus Cowden strain enters LLC-PK cells via clathrin- and cholesterol-dependent endocytosis with the requirement of dynamin II |
Q38761262 | Recent advances in understanding noroviruses |
Q64947514 | The Antigenic Topology of Norovirus as Defined by B and T Cell Epitope Mapping: Implications for Universal Vaccines and Therapeutics. |
Q61820968 | The Oxysterol 25-Hydroxycholesterol Inhibits Replication of Murine Norovirus |
Q30397112 | Transcriptomic analysis of human norovirus NS1-2 protein highlights a multifunctional role in murine monocytes |
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