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通过 Cre 在染色体外的表达,从 Dictyostelium discoideum 突变体中高效去除 floxed Blasticidin S 抗性盒。

Highly effective removal of floxed Blasticidin S resistance cassettes from Dictyostelium discoideum mutants by extrachromosomal expression of Cre.

机构信息

Institute for Biophysical Chemistry, Hannover Medical School, Hannover, Germany.

出版信息

Eur J Cell Biol. 2012 Feb;91(2):156-60. doi: 10.1016/j.ejcb.2011.11.001. Epub 2011 Dec 10.

DOI:10.1016/j.ejcb.2011.11.001
PMID:22154549
Abstract

The inactivation of proteins in cells is inevitable to study their physiological role in various cellular processes. In contrast to strategies to alter the amount of active proteins in cells, only a gene knockout guarantees complete removal of the protein of interest. For Dictyostelium discoideum cells, the gene replacement construct typically consists of a Blasticidin S resistance (Bsr) cassette flanked by fragments of the target gene to allow insertion by homologous recombination. More advanced knockout constructs additionally carry loxP sites on both sides of the Bsr cassettes for subsequent removal of the selection marker by transient expression of Cre recombinase, thus allowing generation of multiple knockouts using just a single selection marker. However, due to its design, the available neomycin selection-based Cre expression plasmid occasionally tends to integrate into the genome and also yield only a moderate number of transfectants in liquid media. In some cases, for instance in SCAR-null cells, it was not possible to remove the Bsr cassette without stable integration of the Cre expression vector into the genome. To circumvent these difficulties we designed the extrachromosomal Cre-recombinase expression vector pTX-NLS-Cre. We verified the greatly improved efficacy of this novel Cre-loxP approach by removal of the Bsr cassette in five different cell lines including the SCAR-null mutant. As a consequence, this vector will be a highly valuable means for the rapid generation of single or multiple mutants remaining sensitive to the most reliable selection markers Blasticidin S and neomycin.

摘要

为了研究蛋白质在各种细胞过程中的生理作用,使蛋白质失活是不可避免的。与改变细胞中活性蛋白数量的策略相比,只有基因敲除才能保证目的蛋白的完全去除。对于盘基网柄菌细胞,基因替换构建体通常由潮霉素 B 抗性(Bsr)盒两侧的靶基因片段组成,以允许通过同源重组进行插入。更先进的敲除构建体还在 Bsr 盒的两侧携带 loxP 位点,以便通过瞬时表达 Cre 重组酶来去除选择标记,从而仅使用单个选择标记即可生成多个敲除体。然而,由于其设计,现有的基于新霉素选择的 Cre 表达质粒偶尔倾向于整合到基因组中,并且在液体培养基中也仅产生中等数量的转染子。在某些情况下,例如在 SCAR 缺失细胞中,不可能在 Cre 表达载体未稳定整合到基因组中的情况下去除 Bsr 盒。为了规避这些困难,我们设计了额外染色体 Cre 重组酶表达载体 pTX-NLS-Cre。我们通过在包括 SCAR 缺失突变体在内的五个不同细胞系中去除 Bsr 盒,验证了这种新型 Cre-loxP 方法的大大提高的功效。因此,该载体将是一种非常有价值的手段,可用于快速生成对最可靠的选择标记潮霉素 B 和新霉素仍敏感的单个或多个突变体。

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