DNA binding and condensation properties of the herpes simplex virus type 1 triplex protein VP19C.

Herpesvirus capsids are regular icosahedrons with a diameter of a 125 nm and are made up of 162 capsomeres arranged on a T = 16 lattice. The capsomeres (VP5) interact with the triplex structure, which is a unique structural feature of herpesvirus capsid shells. The triplex is a heterotrimeric comple...

Full description

Bibliographic Details
Main Authors: Alakesh Bera, Edward M Perkins, Jian Zhu, Heng Zhu, Prashant Desai
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4133253?pdf=render
id doaj-cb8d0749093f4dfb8cbcb41da16358b6
record_format Article
spelling doaj-cb8d0749093f4dfb8cbcb41da16358b62020-11-25T02:32:57ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0198e10464010.1371/journal.pone.0104640DNA binding and condensation properties of the herpes simplex virus type 1 triplex protein VP19C.Alakesh BeraEdward M PerkinsJian ZhuHeng ZhuPrashant DesaiHerpesvirus capsids are regular icosahedrons with a diameter of a 125 nm and are made up of 162 capsomeres arranged on a T = 16 lattice. The capsomeres (VP5) interact with the triplex structure, which is a unique structural feature of herpesvirus capsid shells. The triplex is a heterotrimeric complex; one molecule of VP19C and two of VP23 form a three-pronged structure that acts to stabilize the capsid shell through interactions with adjacent capsomeres. VP19C interacts with VP23 and with the major capsid protein VP5 and is required for the nuclear localization of VP23. Mutation of VP19C results in the abrogation of capsid shell synthesis. Analysis of the sequence of VP19C showed the N-terminus of VP19C is very basic and glycine rich. It was hypothesized that this domain could potentially bind to DNA. In this study an electrophoretic mobility shift assay (EMSA) and a DNA condensation assay were performed to demonstrate that VP19C can bind DNA. Purified VP19C was able to bind to both a DNA fragment of HSV-1 origin as well as a bacterial plasmid sequence indicating that this activity is non-specific. Ultra-structural imaging of the nucleo-protein complexes revealed that VP19C condensed the DNA and forms toroidal DNA structures. Both the DNA binding and condensing properties of VP19C were mapped to the N-terminal 72 amino acids of the protein. Mutational studies revealed that the positively charged arginine residues in this N-terminal domain are required for this binding. This DNA binding activity, which resides in a non-conserved region of the protein could be required for stabilization of HSV-1 DNA association in the capsid shell.http://europepmc.org/articles/PMC4133253?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Alakesh Bera
Edward M Perkins
Jian Zhu
Heng Zhu
Prashant Desai
spellingShingle Alakesh Bera
Edward M Perkins
Jian Zhu
Heng Zhu
Prashant Desai
DNA binding and condensation properties of the herpes simplex virus type 1 triplex protein VP19C.
PLoS ONE
author_facet Alakesh Bera
Edward M Perkins
Jian Zhu
Heng Zhu
Prashant Desai
author_sort Alakesh Bera
title DNA binding and condensation properties of the herpes simplex virus type 1 triplex protein VP19C.
title_short DNA binding and condensation properties of the herpes simplex virus type 1 triplex protein VP19C.
title_full DNA binding and condensation properties of the herpes simplex virus type 1 triplex protein VP19C.
title_fullStr DNA binding and condensation properties of the herpes simplex virus type 1 triplex protein VP19C.
title_full_unstemmed DNA binding and condensation properties of the herpes simplex virus type 1 triplex protein VP19C.
title_sort dna binding and condensation properties of the herpes simplex virus type 1 triplex protein vp19c.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description Herpesvirus capsids are regular icosahedrons with a diameter of a 125 nm and are made up of 162 capsomeres arranged on a T = 16 lattice. The capsomeres (VP5) interact with the triplex structure, which is a unique structural feature of herpesvirus capsid shells. The triplex is a heterotrimeric complex; one molecule of VP19C and two of VP23 form a three-pronged structure that acts to stabilize the capsid shell through interactions with adjacent capsomeres. VP19C interacts with VP23 and with the major capsid protein VP5 and is required for the nuclear localization of VP23. Mutation of VP19C results in the abrogation of capsid shell synthesis. Analysis of the sequence of VP19C showed the N-terminus of VP19C is very basic and glycine rich. It was hypothesized that this domain could potentially bind to DNA. In this study an electrophoretic mobility shift assay (EMSA) and a DNA condensation assay were performed to demonstrate that VP19C can bind DNA. Purified VP19C was able to bind to both a DNA fragment of HSV-1 origin as well as a bacterial plasmid sequence indicating that this activity is non-specific. Ultra-structural imaging of the nucleo-protein complexes revealed that VP19C condensed the DNA and forms toroidal DNA structures. Both the DNA binding and condensing properties of VP19C were mapped to the N-terminal 72 amino acids of the protein. Mutational studies revealed that the positively charged arginine residues in this N-terminal domain are required for this binding. This DNA binding activity, which resides in a non-conserved region of the protein could be required for stabilization of HSV-1 DNA association in the capsid shell.
url http://europepmc.org/articles/PMC4133253?pdf=render
work_keys_str_mv AT alakeshbera dnabindingandcondensationpropertiesoftheherpessimplexvirustype1triplexproteinvp19c
AT edwardmperkins dnabindingandcondensationpropertiesoftheherpessimplexvirustype1triplexproteinvp19c
AT jianzhu dnabindingandcondensationpropertiesoftheherpessimplexvirustype1triplexproteinvp19c
AT hengzhu dnabindingandcondensationpropertiesoftheherpessimplexvirustype1triplexproteinvp19c
AT prashantdesai dnabindingandcondensationpropertiesoftheherpessimplexvirustype1triplexproteinvp19c
_version_ 1724816561633492992