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一种浓缩型基因座控制区盒的开发及其在用于γ-珠蛋白的逆转录病毒载体中的测试。

Development of a condensed locus control region cassette and testing in retrovirus vectors for A gamma-globin.

作者信息

Emery D W, Chen H, Li Q, Stamatoyannopoulos G

机构信息

University of Washington Department of Medicine, Seattle 98195, USA.

出版信息

Blood Cells Mol Dis. 1998 Sep;24(3):322-39. doi: 10.1006/bcmd.1998.0200.

DOI:10.1006/bcmd.1998.0200
PMID:10087991
Abstract

Retrovirus vectors for A gamma-globin are being developed for the treatment of beta chain hemoglobinopathies. Toward the goal of achieving therapeutic expression levels, core elements of the beta-globin locus control region (LCR) hypersensitive sites (HS) were screened for enhancer activity in erythroid MEL and K562 cell lines using a drug-resistant colony assay. When used alone, core elements of HS1, HS3, and HS4 showed no activity and a fragment for HS2 showed only modest activity in the colony assay. However, a 1.1 kb combination of fragments for HS2, HS3, and HS4 (termed a nLCR) enhanced colony formation 17-fold in K562 cells and 94-fold in MEL cells. Addition of an HS1 fragment enhanced nLCR activity only modestly in MEL cells. When linked to a beta-globin gene, the 1.1 kb nLCR enhanced globin mRNA expression to 82% per copy of mouse alpha-globin in transfected MEL cells. Inclusion of a nLCR in retrovirus vectors containing a beta-globin promoter and various A gamma-globin gene expression cassettes resulted in extreme genetic instability and reduced titers. Specific deletions were abrogated by removing homologous sequences, but random recombinations were still observed at significant frequencies. In MEL cells containing intact provirus, A gamma-globin mRNA produced by an optimal vector containing the nLCR was only 2-fold higher (8.5% vs. 3.9% per copy of mouse alpha-globin) compared to the same vector without the nLCR. These data suggest that vector elements detract from the ability of the nLCR to enhance expression of the beta pr.A gamma cassettes.

摘要

用于治疗β链血红蛋白病的Aγ-珠蛋白逆转录病毒载体正在研发中。为了实现治疗性表达水平的目标,使用耐药菌落测定法,在红系MEL和K562细胞系中筛选β-珠蛋白基因座控制区(LCR)超敏位点(HS)的核心元件的增强子活性。单独使用时,HS1、HS3和HS4的核心元件无活性,HS2片段在菌落测定中仅表现出适度活性。然而,HS2、HS3和HS4片段的1.1 kb组合(称为nLCR)在K562细胞中使菌落形成增加了17倍,在MEL细胞中增加了94倍。添加HS1片段仅在MEL细胞中适度增强了nLCR活性。当与β-珠蛋白基因连接时,1.1 kb的nLCR在转染的MEL细胞中将珠蛋白mRNA表达提高到每拷贝小鼠α-珠蛋白的82%。在含有β-珠蛋白启动子和各种Aγ-珠蛋白基因表达盒的逆转录病毒载体中包含nLCR会导致极端的基因不稳定性并降低滴度。通过去除同源序列消除了特定缺失,但仍以显著频率观察到随机重组。在含有完整前病毒的MEL细胞中,与不含nLCR的相同载体相比,含有nLCR的最佳载体产生的Aγ-珠蛋白mRNA仅高2倍(每拷贝小鼠α-珠蛋白分别为8.5%和3.9%)。这些数据表明载体元件损害了nLCR增强β pr.Aγ盒表达的能力。

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