murine leukemia virus vector
Enhancers Are Major Targets for Murine Leukemia Virus Vector Integration
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The Ataxia Telangiectasia-Mutated and Rad3-Related Protein Is Dispensable for Retroviral Integration
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Gene transfer into mammalian cells by a Rous sarcoma virus-based retroviral vector with the host range of the amphotropic murine leukemia virus.
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Diminished Potential for B-Lymphoid Differentiation after Murine Leukemia Virus Infection In Vivo and in EML Hematopoietic Progenitor Cells
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Identification of Directly Infected Cells in the Bone Marrow of Neonatal Moloney Murine Leukemia Virus-Infected Mice by Use of a Moloney Murine Leukemia Virus-Based Vector
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Construction of a mammalian transducing vector from the genome of Moloney murine leukemia virus.
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Foamy Virus Envelope Glycoprotein-Mediated Entry Involves a pH-Dependent Fusion Process
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High rate of genetic rearrangement during replication of a Moloney murine leukemia virus-based vector.
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Construction and Characterization of a Hybrid Mouse Mammary Tumor Virus/Murine Leukemia Virus-Based Retroviral Vector
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Nonreciprocal Pseudotyping: Murine Leukemia Virus Proteins Cannot Efficiently Package Spleen Necrosis Virus-Based Vector RNA
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Influence of DNA Methylation and Core Binding Factors in Expression of Leukemia Virus in Hemapoietic Stem Cells Manoj G. Tyagi 1* and Aniket Kumar1
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Replacement of Murine Leukemia Virus Readthrough Mechanism by Human Immunodeficiency Virus Frameshift Allows Synthesis of Viral Proteins and Virus Replication
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Functional Interplay Between Murine Leukemia Virus Glycogag, Serinc5, and Surface Glycoprotein Governs Virus Entry, with Opposite Effects on Gammaretroviral and Ebolavirus Glycoproteins
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Transfer of Primer Binding Site-Mutated Simian Immunodeficiency Virus Vectors by Genetically Engineered Artificial and Hybrid tRNA-Like Primers
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TM domain swapping of murine leukemia virus and human T-cell leukemia virus envelopes confers different infectious abilities despite similar incorporation into virions.
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Rescue of Murine Sarcoma Virus from a Sarcoma-Positive Leukemia-Negative Cell Line: Requirement for Replicating Leukemia Virus
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Temperature-sensitive viral RNA expression in Moloney murine sarcoma virus ts110-infected cells.
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Replication and Pathogenicity of Primer Binding Site Mutants of SL3-3 Murine Leukemia Viruses
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Proviral genome of radiation leukemia virus: molecular cloning of biologically active proviral DNA and nucleotide sequence of its long terminal repeat.
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Mechanisms employed by retroviruses to exploit host factors for translational control of a complicated proteome
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