Abstract
We have investigated the binding of the f1 single-stranded DNA-binding protein (gene V protein) to DNA oligonucleotides and RNA synthesized in vitro. The first 16 nucleotides of the f1 gene II mRNA leader sequence were previously identified as the gene II RNA-operator; the target to which the gene V protein binds to repress gene II translation. Using a gel retardation assay, we find that the preferential binding of gene V protein to an RNA carrying the gene II RNA-operator sequence is affected by mutations which abolish gene II translational repression in vivo. In vitro, gene V protein also binds preferentially to a DNA oligonucleotide whose sequence is the DNA analog of the wild-type gene II RNA-operator. Therefore, the gene V protein recognizes the gene II mRNA operator sequence when present in either an RNA or DNA context.
MeSH Terms
Coliphages/genetics
DNA Mutational Analysis
DNA, Single-Stranded/metabolism
DNA-Binding Proteins/genetics
Gene Expression Regulation, Viral
In Vitro Techniques
Oligonucleotides/metabolism
Operator Regions, Genetic
Protein Biosynthesis
RNA, Messenger/metabolism
RNA, Viral/metabolism
Repressor Proteins/metabolism
Transcription Factors/metabolism
Viral Proteins/genetics
Chemicals
DNA, Single-Stranded
DNA-Binding Proteins
Oligonucleotides
RNA, Messenger
RNA, Viral
Repressor Proteins
Transcription Factors
Viral Proteins
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Michel B
Rockefeller University, New York, NY 10021.
Zinder N D
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