Intra- and inter-subunit disulfide bond formation is nonessential in adeno-associated viral capsids.

The capsid proteins of adeno-associated viruses (AAV) have five conserved cysteine residues. Structural analysis of AAV serotype 2 reveals that Cys289 and Cys361 are located adjacent to each other within each monomer, while Cys230 and Cys394 are located on opposite edges of each subunit and juxtapos...

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Main Authors: Nagesh Pulicherla, Pradeep Kota, Nikolay V Dokholyan, Aravind Asokan
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3289628?pdf=render
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spelling doaj-2d1d902c9eb44f94a2ad8c8cca8d7f7b2020-11-25T01:48:14ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0172e3216310.1371/journal.pone.0032163Intra- and inter-subunit disulfide bond formation is nonessential in adeno-associated viral capsids.Nagesh PulicherlaPradeep KotaNikolay V DokholyanAravind AsokanThe capsid proteins of adeno-associated viruses (AAV) have five conserved cysteine residues. Structural analysis of AAV serotype 2 reveals that Cys289 and Cys361 are located adjacent to each other within each monomer, while Cys230 and Cys394 are located on opposite edges of each subunit and juxtaposed at the pentamer interface. The Cys482 residue is located at the base of a surface loop within the trimer region. Although plausible based on molecular dynamics simulations, intra- or inter-subunit disulfides have not been observed in structural studies. In the current study, we generated a panel of Cys-to-Ser mutants to interrogate the potential for disulfide bond formation in AAV capsids. The C289S, C361S and C482S mutants were similar to wild type AAV with regard to titer and transduction efficiency. However, AAV capsid protein subunits with C230S or C394S mutations were prone to proteasomal degradation within the host cells. Proteasomal inhibition partially blocked degradation of mutant capsid proteins, but failed to rescue infectious virions. While these results suggest that the Cys230/394 pair is critical, a C394V mutant was found viable, but not the corresponding C230V mutant. Although the exact nature of the structural contribution(s) of Cys230 and Cys394 residues to AAV capsid formation remains to be determined, these results support the notion that disulfide bond formation within the Cys289/361 or Cys230/394 pair appears to be nonessential. These studies represent an important step towards understanding the role of inter-subunit interactions that drive AAV capsid assembly.http://europepmc.org/articles/PMC3289628?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Nagesh Pulicherla
Pradeep Kota
Nikolay V Dokholyan
Aravind Asokan
spellingShingle Nagesh Pulicherla
Pradeep Kota
Nikolay V Dokholyan
Aravind Asokan
Intra- and inter-subunit disulfide bond formation is nonessential in adeno-associated viral capsids.
PLoS ONE
author_facet Nagesh Pulicherla
Pradeep Kota
Nikolay V Dokholyan
Aravind Asokan
author_sort Nagesh Pulicherla
title Intra- and inter-subunit disulfide bond formation is nonessential in adeno-associated viral capsids.
title_short Intra- and inter-subunit disulfide bond formation is nonessential in adeno-associated viral capsids.
title_full Intra- and inter-subunit disulfide bond formation is nonessential in adeno-associated viral capsids.
title_fullStr Intra- and inter-subunit disulfide bond formation is nonessential in adeno-associated viral capsids.
title_full_unstemmed Intra- and inter-subunit disulfide bond formation is nonessential in adeno-associated viral capsids.
title_sort intra- and inter-subunit disulfide bond formation is nonessential in adeno-associated viral capsids.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description The capsid proteins of adeno-associated viruses (AAV) have five conserved cysteine residues. Structural analysis of AAV serotype 2 reveals that Cys289 and Cys361 are located adjacent to each other within each monomer, while Cys230 and Cys394 are located on opposite edges of each subunit and juxtaposed at the pentamer interface. The Cys482 residue is located at the base of a surface loop within the trimer region. Although plausible based on molecular dynamics simulations, intra- or inter-subunit disulfides have not been observed in structural studies. In the current study, we generated a panel of Cys-to-Ser mutants to interrogate the potential for disulfide bond formation in AAV capsids. The C289S, C361S and C482S mutants were similar to wild type AAV with regard to titer and transduction efficiency. However, AAV capsid protein subunits with C230S or C394S mutations were prone to proteasomal degradation within the host cells. Proteasomal inhibition partially blocked degradation of mutant capsid proteins, but failed to rescue infectious virions. While these results suggest that the Cys230/394 pair is critical, a C394V mutant was found viable, but not the corresponding C230V mutant. Although the exact nature of the structural contribution(s) of Cys230 and Cys394 residues to AAV capsid formation remains to be determined, these results support the notion that disulfide bond formation within the Cys289/361 or Cys230/394 pair appears to be nonessential. These studies represent an important step towards understanding the role of inter-subunit interactions that drive AAV capsid assembly.
url http://europepmc.org/articles/PMC3289628?pdf=render
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AT nikolayvdokholyan intraandintersubunitdisulfidebondformationisnonessentialinadenoassociatedviralcapsids
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