Cargando…

Expression of a biotin acceptor peptide-containing protein with potential incorporation on the lentiviral envelope as a viral surface engineering platform

Lentiviral vectors are among the promising viral based-vectors in gene therapy applications, but the efficiency of their targeting needs to be improved. (Strept)avidin-biotin adaptor system is a novel approach to modify the lentiviral envelope for better targeting properties. Herein, we describe uti...

Descripción completa

Detalles Bibliográficos
Autores principales: Etemadzadeh, Mohammad Hossein, Arashkia, Arash, Roohvand, Farzin, Ahani, Roshanak, Mohajel, Nasir, Baniasadi, Vahid, Norouzian, Dariush, Azadmanesh, Kayhan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Medknow Publications & Media Pvt Ltd 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4623616/
https://www.ncbi.nlm.nih.gov/pubmed/26600854
_version_ 1782397705958457344
author Etemadzadeh, Mohammad Hossein
Arashkia, Arash
Roohvand, Farzin
Ahani, Roshanak
Mohajel, Nasir
Baniasadi, Vahid
Norouzian, Dariush
Azadmanesh, Kayhan
author_facet Etemadzadeh, Mohammad Hossein
Arashkia, Arash
Roohvand, Farzin
Ahani, Roshanak
Mohajel, Nasir
Baniasadi, Vahid
Norouzian, Dariush
Azadmanesh, Kayhan
author_sort Etemadzadeh, Mohammad Hossein
collection PubMed
description Lentiviral vectors are among the promising viral based-vectors in gene therapy applications, but the efficiency of their targeting needs to be improved. (Strept)avidin-biotin adaptor system is a novel approach to modify the lentiviral envelope for better targeting properties. Herein, we describe utilization of this adaptor system by designing a candidate envelope protein-bearing biotin acceptor peptide (BAP) and evaluation of its expression in 293T cells. To this end, a DNA sequence containing flexible linkers, a 15-aminoacids BAP and specific membrane regions of a viral protein was designed and synthesized in tandem. The synthesized gene was amplified with polymerase chain reaction to include BglII and SalI restriction sites and subcloned into the same sites of pDisplay vector in frame with HA-tag and myc epitope to construct the pDis-GS-BAP. 293T cells were transfected with pDis-GS-BAP and expression of resulting protein (dis-GS-BAP) was evaluated by Western blotting using anti-HA tag antibody. Efficiency of transfection procedure was evaluated by pEGFP-N1 vector and tracking for green fluorescent protein expression via fluorescence microscopy. Restriction analysis and DNA sequencing confirmed the precision of cloning steps. Fluorescence microscopy indicated above 70% transfection efficiency and Western blot analysis of pDis-GS-BAP-transfected 293T cells showed a protein band of approximately 17 kDa corresponding to the predicted size of dis-GS-BAP protein. These promising results indicate the possibility of cell surface expression and further biotinylation of dis-GS-BAP protein in ongoing studies.
format Online
Article
Text
id pubmed-4623616
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Medknow Publications & Media Pvt Ltd
record_format MEDLINE/PubMed
spelling pubmed-46236162015-11-23 Expression of a biotin acceptor peptide-containing protein with potential incorporation on the lentiviral envelope as a viral surface engineering platform Etemadzadeh, Mohammad Hossein Arashkia, Arash Roohvand, Farzin Ahani, Roshanak Mohajel, Nasir Baniasadi, Vahid Norouzian, Dariush Azadmanesh, Kayhan Res Pharm Sci Original Article Lentiviral vectors are among the promising viral based-vectors in gene therapy applications, but the efficiency of their targeting needs to be improved. (Strept)avidin-biotin adaptor system is a novel approach to modify the lentiviral envelope for better targeting properties. Herein, we describe utilization of this adaptor system by designing a candidate envelope protein-bearing biotin acceptor peptide (BAP) and evaluation of its expression in 293T cells. To this end, a DNA sequence containing flexible linkers, a 15-aminoacids BAP and specific membrane regions of a viral protein was designed and synthesized in tandem. The synthesized gene was amplified with polymerase chain reaction to include BglII and SalI restriction sites and subcloned into the same sites of pDisplay vector in frame with HA-tag and myc epitope to construct the pDis-GS-BAP. 293T cells were transfected with pDis-GS-BAP and expression of resulting protein (dis-GS-BAP) was evaluated by Western blotting using anti-HA tag antibody. Efficiency of transfection procedure was evaluated by pEGFP-N1 vector and tracking for green fluorescent protein expression via fluorescence microscopy. Restriction analysis and DNA sequencing confirmed the precision of cloning steps. Fluorescence microscopy indicated above 70% transfection efficiency and Western blot analysis of pDis-GS-BAP-transfected 293T cells showed a protein band of approximately 17 kDa corresponding to the predicted size of dis-GS-BAP protein. These promising results indicate the possibility of cell surface expression and further biotinylation of dis-GS-BAP protein in ongoing studies. Medknow Publications & Media Pvt Ltd 2015 /pmc/articles/PMC4623616/ /pubmed/26600854 Text en Copyright: © 2015 Research in Pharmaceutical Sciences http://creativecommons.org/licenses/by-nc-sa/3.0 This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 3.0 License, which allows others to remix, tweak, and build upon the work non-commercially, as long as the author is credited and the new creations are licensed under the identical terms.
spellingShingle Original Article
Etemadzadeh, Mohammad Hossein
Arashkia, Arash
Roohvand, Farzin
Ahani, Roshanak
Mohajel, Nasir
Baniasadi, Vahid
Norouzian, Dariush
Azadmanesh, Kayhan
Expression of a biotin acceptor peptide-containing protein with potential incorporation on the lentiviral envelope as a viral surface engineering platform
title Expression of a biotin acceptor peptide-containing protein with potential incorporation on the lentiviral envelope as a viral surface engineering platform
title_full Expression of a biotin acceptor peptide-containing protein with potential incorporation on the lentiviral envelope as a viral surface engineering platform
title_fullStr Expression of a biotin acceptor peptide-containing protein with potential incorporation on the lentiviral envelope as a viral surface engineering platform
title_full_unstemmed Expression of a biotin acceptor peptide-containing protein with potential incorporation on the lentiviral envelope as a viral surface engineering platform
title_short Expression of a biotin acceptor peptide-containing protein with potential incorporation on the lentiviral envelope as a viral surface engineering platform
title_sort expression of a biotin acceptor peptide-containing protein with potential incorporation on the lentiviral envelope as a viral surface engineering platform
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4623616/
https://www.ncbi.nlm.nih.gov/pubmed/26600854
work_keys_str_mv AT etemadzadehmohammadhossein expressionofabiotinacceptorpeptidecontainingproteinwithpotentialincorporationonthelentiviralenvelopeasaviralsurfaceengineeringplatform
AT arashkiaarash expressionofabiotinacceptorpeptidecontainingproteinwithpotentialincorporationonthelentiviralenvelopeasaviralsurfaceengineeringplatform
AT roohvandfarzin expressionofabiotinacceptorpeptidecontainingproteinwithpotentialincorporationonthelentiviralenvelopeasaviralsurfaceengineeringplatform
AT ahaniroshanak expressionofabiotinacceptorpeptidecontainingproteinwithpotentialincorporationonthelentiviralenvelopeasaviralsurfaceengineeringplatform
AT mohajelnasir expressionofabiotinacceptorpeptidecontainingproteinwithpotentialincorporationonthelentiviralenvelopeasaviralsurfaceengineeringplatform
AT baniasadivahid expressionofabiotinacceptorpeptidecontainingproteinwithpotentialincorporationonthelentiviralenvelopeasaviralsurfaceengineeringplatform
AT norouziandariush expressionofabiotinacceptorpeptidecontainingproteinwithpotentialincorporationonthelentiviralenvelopeasaviralsurfaceengineeringplatform
AT azadmaneshkayhan expressionofabiotinacceptorpeptidecontainingproteinwithpotentialincorporationonthelentiviralenvelopeasaviralsurfaceengineeringplatform