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Cryo-electron tomography of Marburg virus particles and their morphogenesis within infected cellsNucleocapsid formation and RNA synthesis of Marburg virus is dependent on two coiled coil motifs in the nucleoproteinIntracellular events and cell fate in filovirus infectionMarburg Virus Reverse Genetics SystemsThe organisation of Ebola virus reveals a capacity for extensive, modular polyploidyElectron tomography reveals the steps in filovirus buddingMolecular architecture of the nucleoprotein C-terminal domain from the Ebola and Marburg virusesParamyxovirus ultrastructure and genome packaging: cryo-electron tomography of sendai virus.Mapping of the VP40-binding regions of the nucleoprotein of Ebola virus.Assembly, maturation and three-dimensional helical structure of the teratogenic rubella virus.Purification and characterization of Nipah virus nucleocapsid protein produced in insect cells.Characterization of the Ebola virus nucleoprotein-RNA complexIncoming RNA virus nucleocapsids containing a 5'-triphosphorylated genome activate RIG-I and antiviral signalingFungal negative-stranded RNA virus that is related to bornaviruses and nyaviruses.Filovirus replication and transcription.Functional mapping of the nucleoprotein of Ebola virus.Key genomic changes necessary for an in vivo lethal mouse marburgvirus variant selection process.Recombinant Marburg virus expressing EGFP allows rapid screening of virus growth and real-time visualization of virus spread.Assembly of the Ebola Virus Nucleoprotein from a Chaperoned VP35 ComplexInteraction of vesicular stomatitis virus P and N proteins: identification of two overlapping domains at the N terminus of P that are involved in N0-P complex formation and encapsidation of viral genome RNA.Forty-five years of Marburg virus research.Phosphorylation of Marburg virus NP region II modulates viral RNA synthesis.Homo-oligomerization of Marburgvirus VP35 is essential for its function in replication and transcriptionCrystal Structure of the Marburg Virus Nucleoprotein Core Domain Chaperoned by a VP35 Peptide Reveals a Conserved Drug Target for Filovirus.Filovirus Structural Biology: The Molecules in the Machine.Inside the Cell: Assembly of Filoviruses.Budding of Marburgvirus is associated with filopodia.Effect of Ebola virus proteins GP, NP and VP35 on VP40 VLP morphology.Multivesicular bodies as a platform for formation of the Marburg virus envelope.Rapid assembly of sensitive antigen-capture assays for Marburg virus, using in vitro selection of llama single-domain antibodies, at biosafety level 4.Ebola virus VP35-VP40 interaction is sufficient for packaging 3E-5E minigenome RNA into virus-like particles.Reverse Genetics of Filoviruses.
P2860
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P2860
description
2002 nî lūn-bûn
@nan
2002年の論文
@ja
2002年論文
@yue
2002年論文
@zh-hant
2002年論文
@zh-hk
2002年論文
@zh-mo
2002年論文
@zh-tw
2002年论文
@wuu
2002年论文
@zh
2002年论文
@zh-cn
name
Morphology of Marburg virus NP-RNA.
@en
type
label
Morphology of Marburg virus NP-RNA.
@en
prefLabel
Morphology of Marburg virus NP-RNA.
@en
P2093
P356
P1433
P1476
Morphology of Marburg virus NP-RNA.
@en
P2093
Larissa Kolesnikova
Manos Mavrakis
Rob W H Ruigrok
Stephan Becker
P304
P356
10.1006/VIRO.2002.1433
P407
P50
P577
2002-05-01T00:00:00Z