首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >Identification of the positive and negative cis-elements involved in modulating the constitutive expression of mouse thymosin beta(4) gene
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Identification of the positive and negative cis-elements involved in modulating the constitutive expression of mouse thymosin beta(4) gene

机译:阳性和阴性顺式元件的参与调节小鼠胸腺素β(4)基因的组成表达的鉴定。

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We previously showed that the - 278 to + 410 region of mouse thymosin β(4) (mTβ(4)) gene supports high levels of reporter gene expression in NIH3T3 cells. This region contains part of the 5'-flanking sequences (- 278 to - 1), the intact first exon (+ 1 to + 133), and portion of the first intron (+ 134 to + 410). However, the size of this exon is much longer than those of its rat and human counterparts. To resolve the question regarding this size discrepancy, transcription start site for the mTβ(4) gene was re-examined by primer extension and bioinformatics analyses. We found that the first exon of mTβ(4) gene spans 56 bp with its cap site situated in a putative initiator highly similar to the consensus mammalian sequence. In addition, a TATA box- like motif and two consecutive downstream promoter elements were also found. To delineate the cis-elements involved in modulating the constitutive expression of mTβ(4) gene, transient transfection assay was performed. Interestingly, expression level of the reporter gene driven by the - 117 to + 56 region of mTβ(4) gene was approximately 8-fold higher than that directed by the SV40 promoter and significant promoter activity was found to be associated with the smaller (- 56 to + 56) fragment. A nuclear protein-bound silencer was located in the region between the - 167 and - 118 and an enhancer whose effect did not seem to be dependent on protein binding was identified in the downstream (- 117 to - 88) region. However, neither of these cis-elements affected reporter expression driven by a SV40 promoter. Intriguingly, mTβ(4) promoter functioned well in human colorectal (SW480) and cervical (HeLa) carcinoma cells. Taken together, our findings not only provide crucial information for further elucidation of the transcriptional regulation of mTβ(4) gene but also raise the possibility of utilizing its promoter to produce large quantity of recombinant proteins in mammalian cells.
机译:我们先前显示,小鼠胸腺素β(4)(mTβ(4))基因的-278至+ 410区支持NIH3T3细胞中高水平的报告基因表达。该区域包含5'侧翼序列的一部分(-278至-1),完整的第一外显子(+1至+ 133)和第一内含子的一部分(+ 134至+ 410)。但是,该外显子的大小比大鼠和人类的外显子长得多。为了解决有关此大小差异的问题,通过引物延伸和生物信息学分析对mTβ(4)基因的转录起始位点进行了重新检查。我们发现,mTβ(4)基因的第一个外显子跨度为56 bp,其帽位位于推定的启动子中,高度类似于共有哺乳动物序列。另外,还发现了TATA盒状基序和两个连续的下游启动子元件。为了描述参与调节mTβ(4)基因组成型表达的顺式元件,进行了瞬时转染实验。有趣的是,由mTβ(4)基因的-117至+ 56区驱动的报道基因的表达水平比SV40启动子指导的表达水平高约8倍,并且发现显着的启动子活性与较小的(- 56至+ 56)片段。核蛋白结合的沉默子位于-167和-118之间的区域,在下游(-117至-88)区域发现了增强子,其作用似乎不依赖于蛋白结合。但是,这些顺式元件均未影响由SV40启动子驱动的报道基因表达。有趣的是,mTβ(4)启动子在人大肠癌(SW480)和宫颈癌(HeLa)癌细胞中功能良好。综上所述,我们的发现不仅为进一步阐明mTβ(4)基因的转录调控提供了关键信息,而且还提高了利用其启动子在哺乳动物细胞中产生大量重组蛋白的可能性。

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