Literature DB >> 15122908

Domain structures and roles in bacteriophage HK97 capsid assembly and maturation.

James M Benevides1, Priya Bondre, Robert L Duda, Roger W Hendrix, George J Thomas.   

Abstract

Head assembly in the double-stranded DNA coliphage HK97 involves initially the formation of the precursor shell Prohead I from approximately 420 copies of a 384-residue subunit. This is followed by proteolytic removal of residues 2-103 to create Prohead II, and then reorganization and expansion of the shell lattice and covalent cross-linking of subunits make Head II. Here, we report and structurally interpret solution Raman spectra of Prohead I, Prohead II, and Head II particles. The Raman signatures of Prohead I and Prohead II indicate a common alpha/beta fold for residues 104-385, and a strongly conserved tertiary structure. The Raman difference spectrum between Prohead I and Prohead II demonstrates that the N-terminal residues 2-103 (Delta-domain) form a predominantly alpha-helical fold devoid of beta-strand. The conformation of the Delta-domain in Prohead I thus resembles that of the previously characterized scaffolding proteins of Salmonellaphage P22 and Bacillus phage phi29 and suggests an analogous architectural role in mediating the assembly of a properly dimensioned precursor shell. The Prohead II --> Head II transition is accompanied by significant reordering of both the secondary and tertiary structures of 104-385, wherein a large increase occurs in the percentage of beta-strand (from 38 to 45%), and a marginal increase is observed in the percentage of alpha-helix (from 27 to 31%). Both are at the expense of unordered chain segments. Residue environments affected by HK97 shell maturation include the unique cysteine (Cys 362) and numerous tyrosines and tryptophans. The tertiary structural reorganization is reminiscent of that observed for the procapsid --> capsid transformation of P22. The Raman signatures of aqueous and crystalline Head II reveal no significant differences between the crystal and solution structures.

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Year:  2004        PMID: 15122908     DOI: 10.1021/bi0302494

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  8 in total

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Journal:  Curr Opin Struct Biol       Date:  2005-04       Impact factor: 6.809

2.  A simple and fast method for discrimination of phage and antibiotic contaminants in raw milk by using Raman spectroscopy.

Authors:  Esra Acar-Soykut; Emine Kubra Tayyarcan; Ismail Hakki Boyaci
Journal:  J Food Sci Technol       Date:  2017-11-09       Impact factor: 2.701

3.  Unfolding thermodynamics of the Delta-domain in the prohead I subunit of phage HK97: determination by factor analysis of Raman spectra.

Authors:  Daniel Nemecek; Stacy A Overman; Roger W Hendrix; George J Thomas
Journal:  J Mol Biol       Date:  2008-11-01       Impact factor: 5.469

4.  Architecture of a dsDNA viral capsid in complex with its maturation protease.

Authors:  David Veesler; Reza Khayat; Srinath Krishnamurthy; Joost Snijder; Rick K Huang; Albert J R Heck; Ganesh S Anand; John E Johnson
Journal:  Structure       Date:  2013-12-19       Impact factor: 5.006

5.  Functional domains of the HK97 capsid maturation protease and the mechanisms of protein encapsidation.

Authors:  Robert L Duda; Bonnie Oh; Roger W Hendrix
Journal:  J Mol Biol       Date:  2013-05-17       Impact factor: 5.469

6.  Exposing the secrets of two well-known Lactobacillus casei phages, J-1 and PL-1, by genomic and structural analysis.

Authors:  Maria Eugenia Dieterle; Charles Bowman; Carlos Batthyany; Esteban Lanzarotti; Adrián Turjanski; Graham Hatfull; Mariana Piuri
Journal:  Appl Environ Microbiol       Date:  2014-09-12       Impact factor: 4.792

7.  Virus capsid expansion driven by the capture of mobile surface loops.

Authors:  Kelly K Lee; Lu Gan; Hiro Tsuruta; Crystal Moyer; James F Conway; Robert L Duda; Roger W Hendrix; Alasdair C Steven; John E Johnson
Journal:  Structure       Date:  2008-10-08       Impact factor: 5.006

8.  The delta domain of the HK97 major capsid protein is essential for assembly.

Authors:  Bonnie Oh; Crystal L Moyer; Roger W Hendrix; Robert L Duda
Journal:  Virology       Date:  2014-04-10       Impact factor: 3.616

  8 in total

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