Abstract
Phage HK022 encodes a protein, Nun, that promotes transcription termination within the pL and pR operons of its relative, phage lambda. The lambda sequences required for termination had previously been shown to overlap the nut sites, which are essential for transcription antitermination during normal lambda growth. To further specify the Nun target and to determine its relation to the nut sites, we constructed deletion and base substitution mutations of the lambda nutL region and measured Nun-dependent reduction of the expression of a downstream reporter gene. The shortest construct that retained full Nun responsiveness was a 42-bp segment that included both boxA and boxB, sequences that have been implicated in lambda antitermination. Deletion of boxA reduced Nun termination, and deletion of both sequences eliminated Nun termination. Base substitutions in boxA and the proximal portion of boxB impaired Nun termination, while base substitutions between boxA and boxB, in the distal portion of boxB, and immediately downstream from boxB had no appreciable effect. The termination defect of all of the base substitution mutations was relieved by increasing the level of Nun protein; in contrast, the deletions and a multiple-base substitution did not regain full Nun responsiveness at elevated Nun concentrations. We also asked if these mutant nut regions retained their ability to interact with N, the lambda-encoded antitermination protein. A qualitative assay showed that mutations within boxA or boxB reduced interaction, while mutations outside boxA and boxB did not. These data show that (i) the recognition sites for N and Nun overlap to a very considerable extent but are probably not identical and (ii) a high concentration of Nun promotes its interaction with mutant nut sites, a behavior also reported to be characteristic of N.
MeSH Terms
Bacteriophage lambda/genetics
Base Sequence
DNA Mutational Analysis
DNA-Binding Proteins/physiology
Gene Expression Regulation, Bacterial
Genes, Viral
Molecular Sequence Data
Regulatory Sequences, Nucleic Acid
Terminator Regions, Genetic
Transcription Factors/genetics
Transcription, Genetic
Viral Proteins/genetics
Viral Regulatory and Accessory Proteins/physiology
Viral Structural Proteins/genetics
Chemicals
DNA-Binding Proteins
N protein, Bacteriophage lambda
Nun protein, Enterobacteria phage HK022
Transcription Factors
Viral Proteins
Viral Regulatory and Accessory Proteins
Viral Structural Proteins
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Baron J
Section on Molecular Genetics, National Institute of Child Health and Human Development, Bethesda, Maryland 20892.
Weisberg R A
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