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Interactions between DNA and coat protein in the structure and assembly of filamentous bacteriophage fd
Abstract:
Bacteriophage fd is a class I filamentous virus (others are M13 and f1) that comprises a circular, single-stranded DNA molecule enclosed in a cylindrical protein sheath to form a flexible particle approximately 890 nm long and 7 nm in diameter. The viral DNA contains 6,408 nucleotides incorporating 10 genes, and the protein sheath is composed of about 2,700 major coat protein subunits in a shingled helical array, the symmetry of which is defined by a fivefold rotational axis combined with a twofold screw axis of pitch 3.2 nm. The DNA extends throughout the length of the particle but is not base-paired and has a symmetry different from that of the protein helix. How the DNA is packed remains unclear but the number (2.4) of nucleotides packaged per major coat protein subunit is certainly not integral, in contrast with, say, the packaging of RNA in tobacco mosaic virus. The coat protein subunit is 50 amino-acid residues in length and, in the virus particle, adopts a largely alpha-helical conformation, with the long axis of the helix aligned close to the long axis of the filament. This protein is arranged with its negatively charged N-terminal region on the outside of the filament and its positively charged C-terminal region on the inside abutting the DNA. We report here that positive charge on one of the four lysine side chains in the latter region has a direct effect on DNA packaging, because when this charge is absent, elongated particles are produced with lengths that can be correlated with the residual positive charge in the C-terminal region of the coat protein subunit.
Insights
Altering a positive charge on the bacteriophage fd coat protein subunit results in elongated viral particles. This finding reveals a direct link between coat protein charge and DNA packaging in filamentous viruses.
Area of Science:
- Virology
- Molecular Biology
- Structural Biology
Background:
- Bacteriophage fd is a filamentous virus with a single-stranded DNA genome enclosed by a protein sheath.
- The protein sheath consists of major coat protein subunits arranged in a helical array.
- DNA packaging within the filamentous viral particle is not fully understood.
Purpose of the Study:
- To investigate the role of positive charge in the C-terminal region of the bacteriophage fd coat protein subunit.
- To determine the effect of this charge on DNA packaging and viral particle length.
Main Methods:
- Site-directed mutagenesis to alter a specific lysine residue in the coat protein's C-terminal region.
- Analysis of viral particle length and morphology.
- Correlation of particle length with residual positive charge in the coat protein.
Main Results:
- Absence of a positive charge on a specific lysine side chain leads to the production of elongated bacteriophage fd particles.
- The length of the elongated particles is directly correlated with the remaining positive charge in the coat protein's C-terminal region.
- This indicates a direct role of this positive charge in regulating DNA packaging and particle assembly.
Conclusions:
- A positive charge on a lysine residue in the C-terminal region of the bacteriophage fd coat protein is crucial for proper DNA packaging.
- Modifications to this charge disrupt normal assembly, leading to elongated viral particles.
- This study elucidates a key interaction between viral DNA and coat protein structure in filamentous phages.