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Murine leukemia virus long terminal repeat sequences can enhance gene activity in a cell-type-specific manner.

Data up to Jan 2025

Published1985
Citations65
References33

Total Citations Per Year

Abstract

References (33)

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1982 • 8,069 citations

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1981 • 776 citations

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1984 • 642 citations

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1982 • 625 citations

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1981 • 462 citations

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1984 • 358 citations

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1977 • 354 citations

Characterization of enhancer elements in the long terminal repeat of Moloney murine sarcoma virus

1984 • 341 citations

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1982 • 328 citations

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1984 • 321 citations

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1980 • 316 citations

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1982 • 276 citations

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1983 • 246 citations

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1983 • 232 citations

Characterization and mapping of RNase T1-resistant oligonucleotides derived from the genomes of Akv and MCF murine leukemia viruses.

1978 • 204 citations

Tissue-specific transcription preference as a determinant of cell tropism and leukaemogenic potential of murine retroviruses

1984 • 202 citations

Long terminal repeat of murine retroviral DNAs: sequence analysis, host-proviral junctions, and preintegration site

1982 • 154 citations

The tandem direct repeats within the long terminal repeat of murine leukemia viruses are the primary determinant of their leukemogenic potential

1984 • 151 citations

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1981 • 133 citations

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1984 • 133 citations

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1978 • 119 citations

Leukemogenic properties of AKR dualtropic (MCF) viruses: Amplification of murine leukemia virus-related antigens on thymocytes and acceleration of leukemia development in AKR mice

1981 • 103 citations

Enhancers and eukaryotic gene expression

1983 • 72 citations

Elements in the long terminal repeat of murine retroviruses enhance stable transformation by thymidine Idnase gene

1983 • 66 citations

The envelope gene and long terminal repeat sequences contribute to the pathogenic phenotype of helper-independent Friend viruses

1984 • 54 citations

Identification of a DNA fragment from a molecularly cloned mink cell focus-inducing murine leukemia virus specific for xenotropic virus-related sequences

1982 • 12 citations

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Murine leukemia virus long terminal repeat sequences can enhance gene activity in a… (1985) – Molecular and Cellular Biology | Metascience Observatory Explorer