A novel and simple method for rapid generation of recombinant porcine adenoviral vectors for transgene expression.

Many human (different serotypes) and nonhuman adenovirus vectors are being used for gene delivery. However, the current system for isolating recombinant adenoviral vectors is either time-consuming or expensive, especially for the generation of recombinant non-human adenoviral vectors. We herein repo...

Full description

Bibliographic Details
Main Authors: Peng Zhang, Enqi Du, Jing Ma, Wenbin Wang, Lu Zhang, Suresh K Tikoo, Zengqi Yang
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4444375?pdf=render
id doaj-df05c13881f049e1850f98dfa651c98a
record_format Article
spelling doaj-df05c13881f049e1850f98dfa651c98a2020-11-24T21:23:43ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-01105e012795810.1371/journal.pone.0127958A novel and simple method for rapid generation of recombinant porcine adenoviral vectors for transgene expression.Peng ZhangEnqi DuJing MaWenbin WangLu ZhangSuresh K TikooZengqi YangMany human (different serotypes) and nonhuman adenovirus vectors are being used for gene delivery. However, the current system for isolating recombinant adenoviral vectors is either time-consuming or expensive, especially for the generation of recombinant non-human adenoviral vectors. We herein report a new and simple cloning approach for the rapid generation of a porcine adenovirus (PAdV-3) vector which shows promise for gene transfer to human cells and evasion of human adenovirus type 5 (HAdV-5) immunity. Based on the final cloning plasmid, pFPAV3-CcdB-Cm, and our modified SLiCE strategy (SLiCE cloning and lethal CcdB screening), the process for generating recombinant PAdV-3 plasmids required only one step in 3 days, with a cloning efficiency as high as 620 ± 49.56 clones/ng and zero background (100% accuracy). The recombinant PAdV-3 plasmids could be successfully rescued in porcine retinal pigment epithelium cells (VR1BL), which constitutively express the HAdV-5 E1 and PAdV-3 E1B 55k genes, and the foreign genes were highly expressed at 24 h after transduction into swine testicle (ST) cells. In conclusion, this strategy for generating recombinant PAdV-3 vectors based on our modified SLiCE cloning system was rapid and cost-efficient, which could be used as universal cloning method for modification the other regions of PAdV-3 genome as well as other adenoviral genomes.http://europepmc.org/articles/PMC4444375?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Peng Zhang
Enqi Du
Jing Ma
Wenbin Wang
Lu Zhang
Suresh K Tikoo
Zengqi Yang
spellingShingle Peng Zhang
Enqi Du
Jing Ma
Wenbin Wang
Lu Zhang
Suresh K Tikoo
Zengqi Yang
A novel and simple method for rapid generation of recombinant porcine adenoviral vectors for transgene expression.
PLoS ONE
author_facet Peng Zhang
Enqi Du
Jing Ma
Wenbin Wang
Lu Zhang
Suresh K Tikoo
Zengqi Yang
author_sort Peng Zhang
title A novel and simple method for rapid generation of recombinant porcine adenoviral vectors for transgene expression.
title_short A novel and simple method for rapid generation of recombinant porcine adenoviral vectors for transgene expression.
title_full A novel and simple method for rapid generation of recombinant porcine adenoviral vectors for transgene expression.
title_fullStr A novel and simple method for rapid generation of recombinant porcine adenoviral vectors for transgene expression.
title_full_unstemmed A novel and simple method for rapid generation of recombinant porcine adenoviral vectors for transgene expression.
title_sort novel and simple method for rapid generation of recombinant porcine adenoviral vectors for transgene expression.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description Many human (different serotypes) and nonhuman adenovirus vectors are being used for gene delivery. However, the current system for isolating recombinant adenoviral vectors is either time-consuming or expensive, especially for the generation of recombinant non-human adenoviral vectors. We herein report a new and simple cloning approach for the rapid generation of a porcine adenovirus (PAdV-3) vector which shows promise for gene transfer to human cells and evasion of human adenovirus type 5 (HAdV-5) immunity. Based on the final cloning plasmid, pFPAV3-CcdB-Cm, and our modified SLiCE strategy (SLiCE cloning and lethal CcdB screening), the process for generating recombinant PAdV-3 plasmids required only one step in 3 days, with a cloning efficiency as high as 620 ± 49.56 clones/ng and zero background (100% accuracy). The recombinant PAdV-3 plasmids could be successfully rescued in porcine retinal pigment epithelium cells (VR1BL), which constitutively express the HAdV-5 E1 and PAdV-3 E1B 55k genes, and the foreign genes were highly expressed at 24 h after transduction into swine testicle (ST) cells. In conclusion, this strategy for generating recombinant PAdV-3 vectors based on our modified SLiCE cloning system was rapid and cost-efficient, which could be used as universal cloning method for modification the other regions of PAdV-3 genome as well as other adenoviral genomes.
url http://europepmc.org/articles/PMC4444375?pdf=render
work_keys_str_mv AT pengzhang anovelandsimplemethodforrapidgenerationofrecombinantporcineadenoviralvectorsfortransgeneexpression
AT enqidu anovelandsimplemethodforrapidgenerationofrecombinantporcineadenoviralvectorsfortransgeneexpression
AT jingma anovelandsimplemethodforrapidgenerationofrecombinantporcineadenoviralvectorsfortransgeneexpression
AT wenbinwang anovelandsimplemethodforrapidgenerationofrecombinantporcineadenoviralvectorsfortransgeneexpression
AT luzhang anovelandsimplemethodforrapidgenerationofrecombinantporcineadenoviralvectorsfortransgeneexpression
AT sureshktikoo anovelandsimplemethodforrapidgenerationofrecombinantporcineadenoviralvectorsfortransgeneexpression
AT zengqiyang anovelandsimplemethodforrapidgenerationofrecombinantporcineadenoviralvectorsfortransgeneexpression
AT pengzhang novelandsimplemethodforrapidgenerationofrecombinantporcineadenoviralvectorsfortransgeneexpression
AT enqidu novelandsimplemethodforrapidgenerationofrecombinantporcineadenoviralvectorsfortransgeneexpression
AT jingma novelandsimplemethodforrapidgenerationofrecombinantporcineadenoviralvectorsfortransgeneexpression
AT wenbinwang novelandsimplemethodforrapidgenerationofrecombinantporcineadenoviralvectorsfortransgeneexpression
AT luzhang novelandsimplemethodforrapidgenerationofrecombinantporcineadenoviralvectorsfortransgeneexpression
AT sureshktikoo novelandsimplemethodforrapidgenerationofrecombinantporcineadenoviralvectorsfortransgeneexpression
AT zengqiyang novelandsimplemethodforrapidgenerationofrecombinantporcineadenoviralvectorsfortransgeneexpression
_version_ 1725991471231795200