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High-level transgene expression in plant cells: effects of a strong scaffold attachment region from tobacco.

机译:植物细胞中的高水平转基因表达:来自烟草的强支架附着区的作用。

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摘要

We have previously shown that yeast scaffold attachment regions (SARs) flanking a chimeric beta-glucuronidase (GUS) reporter gene increased per-copy expression levels by 24-fold in tobacco suspension cell lines stably transformed by microprojectile bombardment. In this study, we examined the effect of a DNA fragment originally identified in a tobacco genomic clone by its activity in an in vitro binding assay. The tobacco SAR has much greater scaffold binding affinity than does the yeast SAR, and tobacco cell lines stably transformed with constructs containing the tobacco SAR accumulated greater than fivefold more GUS enzyme activity than did lines transformed with the yeast SAR construct. Relative to the control construct, flanking the GUS gene with plant SARs increased overall expression per transgene copy by almost 140-fold. In transient expression assays, the same construct increased expression only approximately threefold relative to a control without SARs, indicating that the full SAR effect requires integration into chromosomal DNA. GUS activity in individual stable transformants was not simply proportional to transgene copy number, and the SAR effect was maximal in cell lines with fewer than approximately 10 transgene copies per tobacco genome. Lines with significantly higher copy numbers showed greatly greatly reduced expression relative to the low-copy-number lines. Our results indicate that strong SARs flanking a transgene greatly increases expression without eliminating variation between transformants. We propose that SARs dramatically reduce the severity or likelihood of homology-dependent gene silencing in cells with small numbers of transgenes but do not prevent silencing of transgenes present in many copies.
机译:我们以前已经表明,在嵌合β-葡萄糖醛酸糖苷酶(GUS)报告基因两侧的酵母支架附着区(SARs)在通过微粒轰击稳定转化的烟草悬浮细胞系中,按拷贝表达水平提高了24倍。在这项研究中,我们通过体外结合试验检测了最初在烟草基因组克隆中鉴定的DNA片段的作用。烟草SAR与酵母SAR相比具有更大的支架结合亲和力,并且用含有烟草SAR的构建体稳定转化的烟草细胞系所积累的GUS酶活性比酵母SAR构建体转化的系高出五倍。相对于对照构建体,带有植物SAR的GUS基因侧翼使每个转基因拷贝的总体表达提高了近140倍。在瞬时表达测定中,相同的构建体相对于没有SAR的对照仅将表达提高了约三倍,这表明完整的SAR效应需要整合到染色体DNA中。单个稳定转化子中的GUS活性不仅与转基因拷贝数成正比,而且在每个烟草基因组少于约10个转基因拷贝的细胞系中,SAR效应最大。相对于低拷贝数的系,具有明显更高拷贝数的系显示出大大降低的表达。我们的结果表明,在转基因侧翼的强大SAR极大地增加了表达,而没有消除转化子之间的差异。我们提出SARs可以显着降低具有少量转基因的细胞中同源性依赖性基因沉默的严重性或可能性,但不能防止许多拷贝中存在的转基因沉默。

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