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Unusual transcriptional and translational regulation of the bacteriophage Mu mom operon
1Department of Biology, University of Rochester, NY 14627-0211, USA. modDNA@mail.rochester.edu
Abstract:
The bacteriophage Mu mom gene encodes a novel DNA modification that protects the viral genome against a wide variety of restriction endonucleases. Expression of mom is subject to a series of unusual regulatory controls. Transcription requires the action of a phage-encoded protein, C, which binds (probably as a dimer) the mom promoter from -33 to -52 (with respect to the transcription start site) in two adjacent DNA major grooves on one face of the helix. No apparent direct interaction between C and the host RNA polymerase (RNAP) is evident; however, C binding alters mom DNA conformation. In the absence of C, RNAP binds the mom promoter at a site that results in transcription in a direction away from the mom gene. The function of this transcription is unknown. An additional layer of transcriptional regulation complexity is due to the fact that the host Dam DNA-(N6-adenine)methyltransferase is required. Dam methylation of three closely spaced upstream GATC sequences is necessary to prevent binding by the host protein, OxyR, which acts as a repressor. Repression is not mediated by inhibition of C binding, but rather through interference with C-mediated recruitment of RNAP to the correct site. Translation of mom is regulated by the phage Com protein. Com is only 62 amino acids long and contains a zinc finger-like structure (coordinated by four cysteine residues) in the amino terminal domain. Com binds mom mRNA 5' to the mom open reading frame, whose translation start signals are contained in a stem-loop translation-inhibition-structure. Com binding to its target site (5' to and adjacent to the translation-inhibition-structure) results in a stable change in RNA secondary structure that exposes the translation start signals.
Insights
Bacteriophage Mu mom gene expression involves intricate regulation. Phage proteins C and Com, along with host factors, control transcription and translation, ensuring viral genome protection.
Area of Science:
- Molecular Biology
- Virology
- Genetics
Background:
- Bacteriophage Mu mom gene provides viral genome protection against restriction endonucleases.
- Expression of the mom gene is regulated by complex, multi-layered controls.
Purpose of the Study:
- To elucidate the regulatory mechanisms governing bacteriophage Mu mom gene expression.
- To understand the roles of phage proteins C and Com, and host factors in mom gene regulation.
Main Methods:
- Analysis of protein-DNA and protein-RNA interactions.
- Investigating the effects of DNA methylation and protein binding on gene expression.
- Studying the conformational changes induced by protein binding to DNA and RNA.
Main Results:
- Phage protein C binds mom promoter DNA, altering its conformation and facilitating RNA polymerase binding.
- Host DNA-(N6-adenine)methyltransferase (Dam) methylation prevents repressor OxyR binding, which interferes with C-mediated RNA polymerase recruitment.
- Phage protein Com binds mom mRNA, altering RNA secondary structure to expose translation start signals.
Conclusions:
- Bacteriophage Mu mom gene expression relies on a sophisticated interplay between phage-encoded proteins and host factors.
- These regulatory mechanisms ensure efficient viral genome modification and protection.
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