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在针对肌肉细胞优化的逆转录病毒载体框架中构建人凝血因子IX表达载体。

Construction of human factor IX expression vectors in retroviral vector frames optimized for muscle cells.

作者信息

Wang J M, Zheng H, Sugahara Y, Tan J, Yao S N, Olson E, Kurachi K

机构信息

Department of Human Genetics, University of Michigan Medical School, Ann Arbor 48109, USA.

出版信息

Hum Gene Ther. 1996 Sep 10;7(14):1743-56. doi: 10.1089/hum.1996.7.14-1743.

Abstract

Development of a highly refined human factor IX (hFIX) expression vector system is critical for establishing a durable hemophilia B gene therapy. Here we report construction of a series of retroviral vectors and identification of an optimal basic structure and components for expressing hFIX in skeletal muscle cells. These vectors, which are derived from Moloney murine leukemia virus (MoMLV) with its enhancer sequence in the 3' long terminal repeat (LTR) deleted, contained internal hFIX expression units inserted in forward configuration without or with a viral vector intron sequence (pdL or pdLIn vector frame, respectively) or in inverted configuration without a viral vector intron sequence (pdLi frame). Internal expression units contained a hFIX cDNA or hFIX minigene (hIXm1 or hIXm2) derived from the hFIX cDNA by insertion of a shortened first intron sequence of the hFIX gene. Regardless of the promoter and vector frame used, both hIXm1 and hIXm2 gave 10- to 14-fold higher hFIX expression compared to those with hFIX cDNA. Internal hFIX transcriptional control units of these vectors were composed of various promoters linked with or without the muscle creatine kinase enhancer (Me) sequence. Promoters tested included those of alpha-actin (alpha A775), beta-actin (beta A280), cytochrome oxidase (CO1250 and CO650), myogenin (Mg1031 and Mg353), and Rous sarcoma virus (RSV). beta A200, which was derived from beta A280 by eliminating potential polyadenylation sites, was also tested. As extensively examined with the myogenin promoter, presence of one or multiple copies of Me in the vectors elevated the expression activity in myotubes by 4.5- to 19-fold over those without Me, but not significantly in myoblasts. Similar enhancements in expression activity with Me were also observed with other promoters, except those of RSV and CO. The latter two showed only modest enhancements in the presence of Me. As assayed with myotubes in culture, the general order of hFIX expression activity of various promoters with four copies of Me in the three different vector frames was beta A280 approximately beta A200 > Mg353 > Mg1031 approximately RSV approximately CO650 approximately alpha A775 > CO1250. One exception was that CO650 showed significantly less activity in pdLi-type vectors than in the pdLIn vectors. Based on the systematic analyses of various structural components, a group of pdLi vectors consisting of beta A200, two to four copies of Me, and hIXm2 was identified to have the optimal basic vector structure to be used in retrovirus for hFIX expression in differentiated skeletal muscle cells. The present studies provide the critical first step for establishing a highly refined hemophilia B gene therapy based on skeletal muscle-targeted hFIX gene transfer.

摘要

开发高度优化的人凝血因子IX(hFIX)表达载体系统对于建立持久的B型血友病基因治疗至关重要。在此,我们报告了一系列逆转录病毒载体的构建以及在骨骼肌细胞中表达hFIX的最佳基本结构和组件的鉴定。这些载体源自莫洛尼鼠白血病病毒(MoMLV),其3'长末端重复序列(LTR)中的增强子序列被删除,包含以正向构型插入的内部hFIX表达单元,无病毒载体内含子序列(分别为pdL或pdLIn载体框架)或有病毒载体内含子序列(pdLi框架),或为反向构型且无病毒载体内含子序列。内部表达单元包含hFIX cDNA或hFIX小基因(hIXm1或hIXm2),hIXm1或hIXm2通过插入hFIX基因缩短的第一个内含子序列而从hFIX cDNA衍生而来。无论使用何种启动子和载体框架,与含有hFIX cDNA的载体相比,hIXm1和hIXm2的hFIX表达均高出10至14倍。这些载体的内部hFIX转录控制单元由与肌肉肌酸激酶增强子(Me)序列连接或未连接的各种启动子组成。测试的启动子包括α-肌动蛋白(αA775)、β-肌动蛋白(βA280)、细胞色素氧化酶(CO1250和CO650)、生肌调节因子(Mg1031和Mg353)以及劳氏肉瘤病毒(RSV)的启动子。还测试了通过消除潜在多聚腺苷酸化位点从βA280衍生而来的βA200。正如对生肌调节因子启动子进行的广泛研究那样,载体中存在一个或多个Me拷贝使肌管中的表达活性比没有Me的载体提高了4.5至19倍,但在成肌细胞中没有显著提高。在其他启动子中也观察到Me对表达活性有类似增强作用,但RSV和CO的启动子除外。后两者在有Me存在时仅表现出适度增强。在培养的肌管中进行测定时,在三种不同载体框架中含有四个Me拷贝的各种启动子的hFIX表达活性的一般顺序为βA280≈βA200>Mg353>Mg1031≈RSV≈CO650≈αA775>CO1250。一个例外是,CO650在pdLi型载体中的活性明显低于在pdLIn载体中的活性。基于对各种结构组件的系统分析,确定了一组由βA200、两到四个Me拷贝和hIXm2组成的pdLi载体具有用于逆转录病毒在分化的骨骼肌细胞中表达hFIX的最佳基本载体结构。本研究为基于骨骼肌靶向hFIX基因转移建立高度优化的B型血友病基因治疗提供了关键的第一步。

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