HEK 293细胞
分子生物学
体内
遗传增强
背景(考古学)
病毒载体
体外
基因
重组DNA
终止密码子
转染
互补DNA
生物
遗传学
古生物学
作者
Natalie J Ward,Suzanne M. K. Buckley,Simon N. Waddington,Thierry VandenDriessche,Marinee Chuah,Amit C. Nathwani,Jenny McIntosh,Edward G. D. Tuddenham,Christine Kinnon,Adrian J. Thrasher,John H. McVey
出处
期刊:Blood
[Elsevier BV]
日期:2010-11-02
卷期号:117 (3): 798-807
被引量:176
标识
DOI:10.1182/blood-2010-05-282707
摘要
Abstract Gene therapy for hemophilia A would be facilitated by development of smaller expression cassettes encoding factor VIII (FVIII), which demonstrate improved biosynthesis and/or enhanced biologic properties. B domain deleted (BDD) FVIII retains full procoagulant function and is expressed at higher levels than wild-type FVIII. However, a partial BDD FVIII, leaving an N-terminal 226 amino acid stretch (N6), increases in vitro secretion of FVIII tenfold compared with BDD-FVIII. In this study, we tested various BDD constructs in the context of either wild-type or codon-optimized cDNA sequences expressed under control of the strong, ubiquitous Spleen Focus Forming Virus promoter within a self-inactivating HIV-based lentiviral vector. Transduced 293T cells in vitro demonstrated detectable FVIII activity. Hemophilic mice treated with lentiviral vectors showed expression of FVIII activity and phenotypic correction sustained over 250 days. Importantly, codon-optimized constructs achieved an unprecedented 29- to 44-fold increase in expression, yielding more than 200% normal human FVIII levels. Addition of B domain sequences to BDD-FVIII did not significantly increase in vivo expression. These significant findings demonstrate that shorter FVIII constructs that can be more easily accommodated in viral vectors can result in increased therapeutic efficacy and may deliver effective gene therapy for hemophilia A.
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