Suboptimal enhancer sequences are required for efficient bovine leukemia virus propagation in vivo: implications for viral latency
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Mechanisms of leukemogenesis induced by bovine leukemia virus: prospects for novel anti-retroviral therapies in humanReduced proviral loads during primo-infection of sheep by Bovine Leukemia virus attenuated mutantsComparison of bovine leukemia virus (BLV) and CMV promoter-driven reporter gene expression in BLV-infected and non-infected cellsRecent Advances in BLV ResearchPositive and negative regulation of chicken anemia virus transcription.Purified bovine plasma blocking factor decreases Bovine leukemia virus p24 expression while increasing protein synthesis and transcriptional activity of peripheral blood mononuclear cells in short-term cultureIncreased cell proliferation, but not reduced cell death, induces lymphocytosis in bovine leukemia virus-infected sheepInhibition of histone deacetylases induces bovine leukemia virus expression in vitro and in vivo.Latency of viral expression in vivo is not related to CpG methylation in the U3 region and part of the R region of the long terminal repeat of bovine leukemia virusBovine leukemia virus SU protein interacts with zinc, and mutations within two interacting regions differently affect viral fusion and infectivity in vivo.Preventive and therapeutic strategies for bovine leukemia virus: lessons for HTLV.Chromatin disruption in the promoter of bovine leukemia virus during transcriptional activationMutation of a Single Envelope N-Linked Glycosylation Site Enhances the Pathogenicity of Bovine Leukemia Virus.Mechanism for p38α-mediated experimental autoimmune encephalomyelitis.Even attenuated bovine leukemia virus proviruses can be pathogenic in sheepHuman T-cell leukemia virus type 1 (HTLV-1) bZIP factor requires cellular transcription factor JunD to upregulate HTLV-1 antisense transcription from the 3' long terminal repeat.A new genotype of bovine leukemia virus in South America identified by NGS-based whole genome sequencing and molecular evolutionary genetic analysis.A detailed molecular analysis of complete bovine leukemia virus genomes isolated from B-cell lymphosarcomasA dose-effect relationship for deltaretrovirus-dependent leukemogenesis in sheep.Overlapping CRE and E box motifs in the enhancer sequences of the bovine leukemia virus 5' long terminal repeat are critical for basal and acetylation-dependent transcriptional activity of the viral promoter: implications for viral latency.Animal models on HTLV-1 and related viruses: what did we learn?
P2860
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P2860
Suboptimal enhancer sequences are required for efficient bovine leukemia virus propagation in vivo: implications for viral latency
description
2001 nî lūn-bûn
@nan
2001 թուականի Օգոստոսին հրատարակուած գիտական յօդուած
@hyw
2001 թվականի օգոստոսին հրատարակված գիտական հոդված
@hy
2001年の論文
@ja
2001年論文
@yue
2001年論文
@zh-hant
2001年論文
@zh-hk
2001年論文
@zh-mo
2001年論文
@zh-tw
2001年论文
@wuu
name
Suboptimal enhancer sequences ...... implications for viral latency
@ast
Suboptimal enhancer sequences ...... implications for viral latency
@en
type
label
Suboptimal enhancer sequences ...... implications for viral latency
@ast
Suboptimal enhancer sequences ...... implications for viral latency
@en
prefLabel
Suboptimal enhancer sequences ...... implications for viral latency
@ast
Suboptimal enhancer sequences ...... implications for viral latency
@en
P2093
P2860
P1433
P1476
Suboptimal enhancer sequences ...... implications for viral latency
@en
P2093
Christophe D
Kerkhofs P
Kettmann R
Lemaigre F
Pierreux C
Rousseau GG
P2860
P304
P356
10.1128/JVI.75.15.6977-6988.2001
P577
2001-08-01T00:00:00Z