Efficient Gene Transfer Mediated by HIV-1-based Defective Lentivector and Inhibition of HIV-1 Replication

被引:0
作者
Lingbing ZENG Linbai YE and Yuanan LU Yangtze River Fisheries Research Institute Chinese Academy of Fishery Sciences Jingzhou ChinaRetrovirology Research Laboratory Pacific Biosciences Research Center University of Hawaii at Manoa Honolulu Hawaii USA College of Life Sciences Wuhan University Wuhan China [1 ,2 ,3 ,3 ,2 ,1 ,434000 ,2 ,96822 ,3 ,430072 ]
机构
关键词
HIV-1-based Lentivector; Gene Transfer; Efficiency; Inhibition of HIV-1 Replication;
D O I
暂无
中图分类号
R373 [人体病毒学(致病病毒)];
学科分类号
100103 ; 100705 ;
摘要
Lentiviral vectors have drawn considerable attention recently and show great promise to become important delivery vehicles for future gene transfer manipulation. In the present study we have optimized a protocol for preparation of human immunodeficiency virus type-1 (HIV-1)-based defective lentiviral vectors (DLV) and characterized these vectors in terms of their transduction of different cells. Transient co-transfection of 293T packaging cells with DNA plasmids encoding lentiviral vector constituents resulted in production of high-titer DLV (0.5-1.2 × 107IU/mL), which can be further concentrated over 100-fold through a single step ultracentrifugation. These vectors were capable of transducing a variety of cells from both primate and non-primate sources and high transduction efficiency was achieved using concentrated vectors. Assessment of potential generation of RCV revealed no detection of infection by infectious particles in DLV-transduced CEM, SupT-1 and MT-2 cells. Long-term culture of transduced cells showed a stable expression of transgenes without apparent alteration in cellular morphology and growth kinetics. Vector mobilization to untransduced cells mediated by wild-type HIV-1 infection was confirmed in this test. Challenge of transduced human T-lymphocytes with wild-type HIV-1 showed these cells are totally resistant to the viral infection. Considering the effective gene transfer and stable gene expression, safety and anti-HIV activity, these DLV vectors warrant further exploration for their potential use as a gene transfer vehicle in the development of gene therapy protocols.
引用
收藏
页码:266 / 279
页数:14
相关论文
共 32 条
[21]   Short Communication: Efficiently Inhibiting HIV-1 Replication by a Prototype Foamy Virus Vector Expressing Novel H1 Promoter-Driven Short Hairpin RNAs [J].
Cheng, Qingqing ;
Dong, Lanlan ;
Zhang, Fengfeng ;
Yuan, Peipei ;
Li, Zhi ;
Sun, Yan ;
Yin, Jun ;
Peng, Biwen ;
He, Xiaohua ;
Liu, Wanhong .
AIDS RESEARCH AND HUMAN RETROVIRUSES, 2015, 31 (02) :183-188
[22]   HIV-1 Lentiviral Vector Immunogenicity Is Mediated by Toll-Like Receptor 3 (TLR3) and TLR7 [J].
Breckpot, Karine ;
Escors, David ;
Arce, Frederick ;
Lopes, Lucienne ;
Karwacz, Katarzyna ;
Van Lint, Sandra ;
Keyaerts, Marleen ;
Collins, Mary .
JOURNAL OF VIROLOGY, 2010, 84 (11) :5627-5636
[23]   AAV-Mediated Expression of Broadly Neutralizing and Vaccine-like Antibodies Targeting the HIV-1 Envelope V2 Region [J].
van den Berg, Fiona T. ;
Makoah, Nigel A. ;
Ali, Stuart A. ;
Scott, Tristan A. ;
Mapengo, Rutendo E. ;
Mutsvunguma, Lorraine Z. ;
Mkhize, Nonhlanhla N. ;
Lambson, Bronwen E. ;
Kgagudi, Prudence D. ;
Crowther, Carol ;
Karim, Salim S. Abdool ;
Balazs, Alejandro B. ;
Weinberg, Marc S. ;
Ely, Abdullah ;
Arbuthnot, Patrick B. ;
Morris, Lynn .
MOLECULAR THERAPY-METHODS & CLINICAL DEVELOPMENT, 2019, 14 :100-112
[24]   The EBI2 receptor is coexpressed with CCR5 in CD4+ T cells and boosts HIV-1 R5 replication [J].
Guigues, Adeline ;
Gimenez, Sandrine ;
Mettling, Clement ;
Maurel, Damien ;
Doumazane, Etienne ;
Prezeau, Laurent ;
Francois, Vincent ;
Corbeau, Pierre .
AIDS, 2024, 38 (10) :1449-1459
[25]   Multiplexed tat-Targeting CRISPR-Cas9 Protects T Cells from Acute HIV-1 Infection with Inhibition of Viral Escape [J].
Ophinni, Youdiil ;
Miki, Sayaka ;
Hayashi, Yoshitake ;
Kameoka, Masanori .
VIRUSES-BASEL, 2020, 12 (11)
[26]   Potent and Broad Inhibition of HIV-1 by a Peptide from the gp41 Heptad Repeat-2 Domain Conjugated to the CXCR4 Amino Terminus [J].
Leslie, George J. ;
Wang, Jianbin ;
Richardson, Max W. ;
Haggarty, Beth S. ;
Hua, Kevin L. ;
Duong, Jennifer ;
Secreto, Anthony J. ;
Jordon, Andrea P. O. ;
Romano, Josephine ;
Kumar, Kritika E. ;
DeClercq, Joshua J. ;
Gregory, Philip D. ;
June, Carl H. ;
Root, Michael J. ;
Riley, James L. ;
Holmes, Michael C. ;
Hoxie, James A. .
PLOS PATHOGENS, 2016, 12 (11)
[27]   In vivo gene transfer to the mouse eye using an HIV-based lentiviral vector; efficient long-term transduction of corneal endothelium and retinal pigment epithelium [J].
JWB Bainbridge ;
C Stephens ;
K Parsley ;
C Demaison ;
A Halfyard ;
AJ Thrasher ;
RR Ali .
Gene Therapy, 2001, 8 :1665-1668
[28]   In vivo gene transfer to the mouse eye using an HIV-based lentiviral vector; efficient long-term transduction of corneal endothelium and retinal pigment epithelium [J].
Bainbridge, JWB ;
Stephens, C ;
Parsley, K ;
Demaison, C ;
Halfyard, A ;
Thrasher, AJ ;
Ali, RR .
GENE THERAPY, 2001, 8 (21) :1665-1668
[29]   Restriction of HIV-1-based lentiviral vectors in adult primary marrow-derived and peripheral mobilized human CD34+hematopoietic stem and progenitor cells occurs prior to viral DNA integration [J].
Griffin, Daniel O. ;
Goff, Stephen P. .
RETROVIROLOGY, 2016, 13
[30]   Retinal cell type expression specificity of HIV-1-derived gene transfer vectors upon subretinal injection in the adult rat: influence of pseudotyping and promoter [J].
Bemelmans, AP ;
Bonnel, S ;
Houhou, L ;
Dufour, N ;
Nandrot, E ;
Helmlinger, D ;
Sarkis, C ;
Abitbol, M ;
Mallet, J .
JOURNAL OF GENE MEDICINE, 2005, 7 (10) :1367-1374