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用于选择标记回收和条件性基因敲除的突变型loxP载体。

Mutant loxP vectors for selectable marker recycle and conditional knock-outs.

作者信息

Arakawa H, Lodygin D, Buerstedde J M

机构信息

Heinrich-Pette-Institute, Martinistrasse 52, D-20251 Hamburg, Germany.

出版信息

BMC Biotechnol. 2001;1:7. doi: 10.1186/1472-6750-1-7. Epub 2001 Sep 26.

Abstract

BACKGROUND

Gene disruption by targeted integration of transfected constructs becomes increasingly popular for studies of gene function. The chicken B cell line DT40 has been widely used as a model for gene knock-outs due to its high targeted integration activity. Disruption of multiple genes and complementation of the phenotypes is, however, restricted by the number of available selectable marker genes. It is therefore highly desirable to recycle the selectable markers using a site-specific recombination system like Cre/loxP.

RESULTS

We constructed three plasmid vectors (neoR, puroR and bsr), which carry selectable marker genes flanked by two different mutant loxP sites. After stable transfection, the marker genes can be excised from the genome by transient induction of Cre recombinase expression. This excision converts the two mutant loxP sites to an inactive double-mutant loxP. Furthermore we constructed a versatile expression vector to clone cDNA expression cassettes between mutant loxP sites. This vector can also be used to design knock-out constructs in which the floxed marker gene is combined with a cDNA expression cassette. This construct enables gene knock-out and complementation in a single step. Gene expression can subsequently be terminated by the Cre mediated deletion of the cDNA expression cassette. This strategy is powerful for analyzing essential genes, whose disruption brings lethality to the mutant cell.

CONCLUSIONS

Mutant loxP vectors have been developed for the recycle of selectable markers and conditional gene knock-out approaches. As the marker and the cDNA expression cassettes are driven by the universally active and evolutionary conserved beta-actin promoter, they can be used for the selection of stable transfectants in a wide range of cell lines.

摘要

背景

通过转染构建体的靶向整合来破坏基因在基因功能研究中越来越受欢迎。鸡B细胞系DT40因其高靶向整合活性而被广泛用作基因敲除的模型。然而,多个基因的破坏和表型的互补受到可用选择标记基因数量的限制。因此,非常希望使用像Cre/loxP这样的位点特异性重组系统来回收选择标记。

结果

我们构建了三种质粒载体(neoR、puroR和bsr),它们携带位于两个不同突变型loxP位点侧翼的选择标记基因。稳定转染后,通过瞬时诱导Cre重组酶表达可从基因组中切除标记基因。这种切除将两个突变型loxP位点转化为无活性的双突变型loxP。此外,我们构建了一种通用表达载体,用于在突变型loxP位点之间克隆cDNA表达盒。该载体还可用于设计敲除构建体,其中带loxP的标记基因与cDNA表达盒结合。这种构建体能够在一步中实现基因敲除和互补。随后可通过Cre介导的cDNA表达盒缺失来终止基因表达。该策略对于分析必需基因非常有效,这些基因的破坏会给突变细胞带来致死性。

结论

已开发出突变型loxP载体用于选择标记的回收和条件性基因敲除方法。由于标记和cDNA表达盒由普遍活跃且进化保守的β-肌动蛋白启动子驱动,它们可用于在广泛细胞系中选择稳定转染子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35f6/57747/a7714ce4bc3d/1472-6750-1-7-1.jpg

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