Intracellular distribution of pseudorabies virus UL2 and detection of its nuclear import mechanism
Published 2019 View Full Article
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Title
Intracellular distribution of pseudorabies virus UL2 and detection of its nuclear import mechanism
Authors
Keywords
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Journal
BIOLOGICAL CHEMISTRY
Volume -, Issue -, Pages -
Publisher
Walter de Gruyter GmbH
Online
2019-10-30
DOI
10.1515/hsz-2019-0311
References
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Related references
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- Characterization of the nuclear import and export signals of pseudorabies virus UL31
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- (2014) Meili Li et al. MOLECULAR BIOLOGY REPORTS
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- The Herpes Simplex Virus 1-Encoded Envelope Glycoprotein B Activates NF-κB through the Toll-Like Receptor 2 and MyD88/TRAF6-Dependent Signaling Pathway
- (2013) Mingsheng Cai et al. PLoS One
- Generation and Characterization of a Monoclonal Antibody Against Importin α7/NPI-2
- (2011) Chiaki Mizuguchi et al. HYBRIDOMA
- Identification of Nuclear and Nucleolar Localization Signals of Pseudorabies Virus (PRV) Early Protein UL54 Reveals that Its Nuclear Targeting Is Required for Efficient Production of PRV
- (2011) M. Li et al. JOURNAL OF VIROLOGY
- Characterization of molecular determinants for nucleocytoplasmic shuttling of PRV UL54
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- Association between the Herpes Simplex Virus-1 DNA Polymerase and Uracil DNA Glycosylase
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- Interaction of the human cytomegalovirus uracil DNA glycosylase UL114 with the viral DNA polymerase catalytic subunit UL54
- (2010) B. L. Strang et al. JOURNAL OF GENERAL VIROLOGY
- Reconstitution of Uracil DNA Glycosylase-initiated Base Excision Repair in Herpes Simplex Virus-1
- (2009) Federica Bogani et al. JOURNAL OF BIOLOGICAL CHEMISTRY
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- The simian varicella virus uracil DNA glycosylase and dUTPase genes are expressed in vivo, but are non-essential for replication in cell culture
- (2009) Toby M. Ward et al. VIRUS RESEARCH
- NF-κB p52, RelB and c-Rel are transported into the nucleus via a subset of importin α molecules
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- Design of Peptide Inhibitors for the Importin α/β Nuclear Import Pathway by Activity-Based Profiling
- (2008) Shunichi Kosugi et al. CHEMISTRY & BIOLOGY
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