Recombinant AAV Vectors for Enhanced Expression of Authentic IgG.

Adeno-associated virus (AAV) has become a vector of choice for the treatment of a variety of genetic diseases that require safe and long-term delivery of a missing protein. Muscle-directed gene transfer for delivery of protective antibodies against AIDS viruses and other pathogens has been used expe...

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Main Authors: Sebastian P Fuchs, José M Martinez-Navio, Guangping Gao, Ronald C Desrosiers
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2016-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4917256?pdf=render
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spelling doaj-c9770ef8c536441e9b1551e9bba2d73f2020-11-25T02:12:45ZengPublic Library of Science (PLoS)PLoS ONE1932-62032016-01-01116e015800910.1371/journal.pone.0158009Recombinant AAV Vectors for Enhanced Expression of Authentic IgG.Sebastian P FuchsJosé M Martinez-NavioGuangping GaoRonald C DesrosiersAdeno-associated virus (AAV) has become a vector of choice for the treatment of a variety of genetic diseases that require safe and long-term delivery of a missing protein. Muscle-directed gene transfer for delivery of protective antibodies against AIDS viruses and other pathogens has been used experimentally in mice and monkeys. Here we examined a number of variations to AAV vector design for the ability to produce authentic immunoglobulin G (IgG) molecules. Expression of rhesus IgG from a single single-stranded AAV (ssAAV) vector (one vector approach) was compared to expression from two self-complementary AAV (scAAV) vectors, one for heavy chain and one for light chain (two vector approach). Both the one vector and the two vector approaches yielded considerable levels of expressed full-length IgG. A number of modifications to the ssAAV expression system were then examined for their ability to increase the efficiency of IgG expression. Inclusion of a furin cleavage sequence with a linker peptide just upstream of the 2A self-cleaving sequence from foot-and-mouth disease virus (F2A) increased IgG expression approximately 2 fold. Inclusion of these sequences also helped to ensure a proper sequence at the C-terminal end of the heavy chain. Inclusion of the post-transcriptional regulatory element from woodchuck hepatitis virus (WPRE) further increased IgG expression 1.5-2.0 fold. IgG1 versions of the two rhesus IgGs that were examined consistently expressed better than the IgG2 forms. In contrast to what has been reported for AAV2-mediated expression of other proteins, introduction of capsid mutations Y445F and Y731F did not increase ssAAV1-mediated expression of IgG as determined by transduction experiments in cell culture. Our findings provide a rational basis for AAV vector design for expression of authentic IgG.http://europepmc.org/articles/PMC4917256?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Sebastian P Fuchs
José M Martinez-Navio
Guangping Gao
Ronald C Desrosiers
spellingShingle Sebastian P Fuchs
José M Martinez-Navio
Guangping Gao
Ronald C Desrosiers
Recombinant AAV Vectors for Enhanced Expression of Authentic IgG.
PLoS ONE
author_facet Sebastian P Fuchs
José M Martinez-Navio
Guangping Gao
Ronald C Desrosiers
author_sort Sebastian P Fuchs
title Recombinant AAV Vectors for Enhanced Expression of Authentic IgG.
title_short Recombinant AAV Vectors for Enhanced Expression of Authentic IgG.
title_full Recombinant AAV Vectors for Enhanced Expression of Authentic IgG.
title_fullStr Recombinant AAV Vectors for Enhanced Expression of Authentic IgG.
title_full_unstemmed Recombinant AAV Vectors for Enhanced Expression of Authentic IgG.
title_sort recombinant aav vectors for enhanced expression of authentic igg.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2016-01-01
description Adeno-associated virus (AAV) has become a vector of choice for the treatment of a variety of genetic diseases that require safe and long-term delivery of a missing protein. Muscle-directed gene transfer for delivery of protective antibodies against AIDS viruses and other pathogens has been used experimentally in mice and monkeys. Here we examined a number of variations to AAV vector design for the ability to produce authentic immunoglobulin G (IgG) molecules. Expression of rhesus IgG from a single single-stranded AAV (ssAAV) vector (one vector approach) was compared to expression from two self-complementary AAV (scAAV) vectors, one for heavy chain and one for light chain (two vector approach). Both the one vector and the two vector approaches yielded considerable levels of expressed full-length IgG. A number of modifications to the ssAAV expression system were then examined for their ability to increase the efficiency of IgG expression. Inclusion of a furin cleavage sequence with a linker peptide just upstream of the 2A self-cleaving sequence from foot-and-mouth disease virus (F2A) increased IgG expression approximately 2 fold. Inclusion of these sequences also helped to ensure a proper sequence at the C-terminal end of the heavy chain. Inclusion of the post-transcriptional regulatory element from woodchuck hepatitis virus (WPRE) further increased IgG expression 1.5-2.0 fold. IgG1 versions of the two rhesus IgGs that were examined consistently expressed better than the IgG2 forms. In contrast to what has been reported for AAV2-mediated expression of other proteins, introduction of capsid mutations Y445F and Y731F did not increase ssAAV1-mediated expression of IgG as determined by transduction experiments in cell culture. Our findings provide a rational basis for AAV vector design for expression of authentic IgG.
url http://europepmc.org/articles/PMC4917256?pdf=render
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AT josemmartineznavio recombinantaavvectorsforenhancedexpressionofauthenticigg
AT guangpinggao recombinantaavvectorsforenhancedexpressionofauthenticigg
AT ronaldcdesrosiers recombinantaavvectorsforenhancedexpressionofauthenticigg
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