Products of reverse transcription in avian retrovirus analyzed by electron microscopy.
about
HIV-1 gene expression: lessons from provirus and non-integrated DNAA second origin of DNA plus-strand synthesis is required for optimal human immunodeficiency virus replicationImproved Tet-responsive promoters with minimized background expression.Retroviral DNA integration.Most retroviral recombinations occur during minus-strand DNA synthesis.Mechanisms and factors that influence high frequency retroviral recombinationFeline immunodeficiency virus reverse transcriptase: expression, functional characterization, and reconstitution of the 66- and 51-kilodalton subunitsHuman immunodeficiency virus type 2 preintegration complexes: activities in vitro and response to inhibitors.Strand displacement synthesis capability of Moloney murine leukemia virus reverse transcriptase.Efficient autointegration of avian retrovirus DNA in vitro.Circularization of human immunodeficiency virus type 1 DNA in vitro.A retroviral RNA secondary structure required for efficient initiation of reverse transcriptionRNase H-mediated release of the retrovirus RNA polyadenylate tail during reverse transcription.Involvement of retrovirus reverse transcriptase-associated RNase H in the initiation of strong-stop (+) DNA synthesis and the generation of the long terminal repeat.Cell cycle requirements for transduction by foamy virus vectors compared to those of oncovirus and lentivirus vectors.Relationship of avian retrovirus DNA synthesis to integration in vitro.Analysis of HIV-1 intersubtype recombination breakpoints suggests region with high pairing probability may be a more fundamental factor than sequence similarity affecting HIV-1 recombinationThe remarkable frequency of human immunodeficiency virus type 1 genetic recombinationIntramolecular recombinations of Moloney murine leukemia virus occur during minus-strand DNA synthesis.Equine infectious anemia virus and human immunodeficiency virus DNA synthesis in vitro: characterization of the endogenous reverse transcriptase reaction.Nucleotide sequence of noncoding regions in Rous-associated virus-2: comparisons delineate conserved regions important in replication and oncogenesis.Nonintegrating foamy virus vectors.SJP-L-5 inhibits HIV-1 polypurine tract primed plus-strand DNA elongation, indicating viral DNA synthesis initiation at multiple sites under drug pressure.Design and Potential of Non-Integrating Lentiviral Vectors.
P2860
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P2860
Products of reverse transcription in avian retrovirus analyzed by electron microscopy.
description
1982 nî lūn-bûn
@nan
1982年の論文
@ja
1982年論文
@yue
1982年論文
@zh-hant
1982年論文
@zh-hk
1982年論文
@zh-mo
1982年論文
@zh-tw
1982年论文
@wuu
1982年论文
@zh
1982年论文
@zh-cn
name
Products of reverse transcription in avian retrovirus analyzed by electron microscopy.
@ast
Products of reverse transcription in avian retrovirus analyzed by electron microscopy.
@en
type
label
Products of reverse transcription in avian retrovirus analyzed by electron microscopy.
@ast
Products of reverse transcription in avian retrovirus analyzed by electron microscopy.
@en
prefLabel
Products of reverse transcription in avian retrovirus analyzed by electron microscopy.
@ast
Products of reverse transcription in avian retrovirus analyzed by electron microscopy.
@en
P2093
P2860
P1433
P1476
Products of reverse transcription in avian retrovirus analyzed by electron microscopy.
@en
P2093
P2860
P304
P407
P577
1982-08-01T00:00:00Z