Abstract
The gibbon ape leukemia virus (GALV) contains enhancer activity within its long terminal repeat. In the GALV Seato strain this activity resides in a 48-base-pair (bp) repeated element. We demonstrate the existence of a cellular protein which binds in this region of the Seato strain. A sensitive method for enriching protein-DNA complexes from crude extracts coupled with exonuclease and DNase footprint analysis revealed the specific binding of this protein to a 21-bp region within each repeated element. A 22-bp oligonucleotide fragment defined solely by the 21-bp footprint binds a protein in vitro and displays enhancer activity in vivo, suggesting that this protein is a major determinant of GALV enhancer activity. The protein is present in three cell lines which are positive for enhancer activity and is not detected in Jurkat cells, which are negative for enhancer activity. Only GALV long-terminal-repeat variants which support high levels of enhancer activity in vivo compete with this protein for specific binding in vitro, suggesting a potential role for the protein in determining enhancer activity. This protein binding is not inhibited by competition with heterologous retroviral enhancers, demonstrating that it is not a ubiquitous retroviral enhancer binding protein.
MeSH Terms
Animals
Base Sequence
Cell Line
DNA, Viral/metabolism
DNA-Binding Proteins/metabolism
Enhancer Elements, Genetic
Humans
Hylobates
Leukemia, Experimental/microbiology,veterinary
Repetitive Sequences, Nucleic Acid
Retroviridae/genetics,metabolism
Chemicals
DNA, Viral
DNA-Binding Proteins
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Quinn J P
Laboratory of Pathology, National Cancer Institute, Bethesda, Maryland 20892.
Holbrook N
Levens D
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