首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Bloom's syndrome gene-deficient phenotype in mouse primary cells induced by a modified tetracycline-controlled trans-silencer
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Bloom's syndrome gene-deficient phenotype in mouse primary cells induced by a modified tetracycline-controlled trans-silencer

机译:修饰的四环素控制的反沉默子诱导的小鼠原代细胞中的Bloom's syndrome基因缺陷型

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摘要

We recently reported genome-wide bi-allelic mutagenesis and phenotype-based genetic screening by tetracycline-regulated disruption of the Bloom's syndrome gene (Blm) in mouse embryonic stem (ES) cells. However, the same approach was hampered in mouse tissues owing to leaky expression of the Rlm gene, which is the major obstacle in the tetracycline regulatory system. Here we describe a single-chain reverse tetracycline-controlled trans-silencer (sc rtTS) which reduces leaky expression in the tet-off system. The sc rtTS consists of two silencer moieties linked by a 36 amino acid linker. Although the silencer moiety contained a dimerization domain compatible with the tetracycline-controlled transactivator (tTA), heterodimerization with tTA was prevented because intramolecular self-assembly between linked silencer moieties was preferred. The system was applied to mouse splenic lymphocytes and elevation of sister chromatid exchange, the hallmark of Blm dysfunction, was observed in the presence of doxycycline. A cassette containing both sc rtTS and tTA was introduced into the Blm allele in ES cells and reduction of basal activity was observed upon doxycycline treatment. Our data demonstrate effectiveness of sc rtTS in the tet-off system. Application of sc rtTS in mice may allow us to implement bi-allelic mutagenesis in vivo. (C) 2005 Elsevier B.V. All rights reserved.
机译:我们最近报道了全基因组双等位基因诱变和基于表型的遗传筛选,通过四环素调节小鼠胚胎干(ES)细胞中Bloom综合征基因(Blm)的破坏。但是,由于Rlm基因的漏表达,在小鼠组织中也受阻,这是四环素调节系统的主要障碍。在这里,我们描述了一个单链反向四环素控制的反沉默子(sc rtTS),可减少tet-off系统中的泄漏表达。 scrtTS由通过36个氨基酸的接头连接的两个沉默子部分组成。尽管沉默子部分包含与四环素控制的反式激活剂(tTA)兼容的二聚结构域,但由于优选连接的沉默子部分之间的分子内自组装,因此可以防止与tTA的异二聚化。该系统应用于小鼠脾淋巴细胞,在强力霉素存在下观察到姊妹染色单体交换的升高,这是Blm功能障碍的标志。将包含sc rtTS和tTA的盒带入ES细胞的Blm等位基因中,强力霉素处理后观察到基础活性降低。我们的数据证明了SCRTTS在tet-off系统中的有效性。在小鼠中应用sc rtTS可能使我们能够在体内实施双等位基因诱变。 (C)2005 Elsevier B.V.保留所有权利。

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