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哇巴因选择基因(OuaSelect),一种新型的抗哇巴因人类标记基因,可在48小时内实现高效细胞筛选。

OuaSelect, a novel ouabain-resistant human marker gene that allows efficient cell selection within 48 h.

作者信息

Treschow A, Unger C, Aints A, Felldin U, Aschan J, Dilber M S

机构信息

Department of Medicine, Division of Hematology, Karolinska Institutet at Karolinska University Hospital Huddinge, Stockholm, Sweden.

出版信息

Gene Ther. 2007 Nov;14(22):1564-72. doi: 10.1038/sj.gt.3303015. Epub 2007 Sep 27.

DOI:10.1038/sj.gt.3303015
PMID:17898799
Abstract

Efficient selection of gene-modified cells is required for a number of potential gene therapy applications, as well as molecular biology studies. Ideally, a clinical selection regimen would combine high selection speed, efficiency and efficacy, in addition to clinical grade selection techniques and low immunogenicity. To our knowledge, a selection marker satisfying all these features is so far not available. Ouabain is a clinically used cardiac glycoside and selective Na(+)/K(+)-ATPase inhibitor. On the basis of the high sensitivity of human Na(+)/K(+)-ATPase proteins to ouabain, and rapid killing of cells upon exposure, we have screened the ubiquitously expressed Na(+)/K(+)-ATPase alpha1 subunit for mutations that could greatly increase its resistance to ouabain. Two amino-acid substitutions, Q118R and N129D were sufficient to confer a two log greater resistance to ouabain in HeLa, Jurkat, U2OS cells and in primary cells. Furthermore, following transduction of primary lymphocytes with the alpha1(Q118R/N129D) gene, >99% pure populations of gene-modified cells were achieved with a recovery rate of >80% after 48 h of exposure to ouabain. These results identify the human alpha1(Q118R/N129D) (OuaSelect) as a promising selection marker gene for safe, rapid and cost-effective selection in clinical gene therapy and molecular biology research.

摘要

对于许多潜在的基因治疗应用以及分子生物学研究而言,高效筛选基因修饰细胞是必要的。理想情况下,临床筛选方案应兼具高筛选速度、效率和效力,此外还需具备临床级筛选技术和低免疫原性。据我们所知,目前尚未有满足所有这些特性的筛选标志物。哇巴因是一种临床使用的强心苷和选择性钠钾ATP酶抑制剂。基于人类钠钾ATP酶蛋白对哇巴因的高敏感性以及细胞暴露后迅速死亡的特性,我们筛选了广泛表达的钠钾ATP酶α1亚基,寻找能够大幅增强其对哇巴因抗性的突变。两个氨基酸替换,即Q118R和N129D,足以使HeLa、Jurkat、U2OS细胞以及原代细胞对哇巴因的抗性提高两个数量级。此外,用α1(Q118R/N129D)基因转导原代淋巴细胞后,在暴露于哇巴因48小时后,可获得纯度>99%的基因修饰细胞群体,回收率>80%。这些结果表明,人类α1(Q118R/N129D)(OuaSelect)作为一种有前景的筛选标志物基因,可用于临床基因治疗和分子生物学研究中的安全、快速且经济高效的筛选。

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