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Interactions between DNA and coat protein in the structure and assembly of filamentous bacteriophage fd

Nature
|May 21, 1987
PubMed

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.

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