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The modified rice αAmy8 promoter confers high?level foreign gene expression in a novel hypoxia?inducible expression system in transgenic rice seedlings

机译:修饰的水稻αAmy8启动子在转基因水稻幼苗的新型缺氧诱导表达系统中赋予高水平的外源基因表达

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Expression of α-amylase genes in rice is induced not only by sugar starvation and gibberellin (GA) but also by O_2 deficiency. Promoters of two rice α-amylase genes, αAmy3 and αAmy8, have been shown to direct highlevel production of recombinant proteins in rice suspension cells and germinated seeds. In the present study, we modified the cis-acting DNA elements within the sugar/GA response complex (SRC/GARC) of αAmy8 promoter. We found that addition of a G box and duplicated TA box leads to high-level expression of αAmy8 SRC/GARC and significantly enhances αAmy8 promoter activity in transformed rice cells and germinated transgenic rice seeds. We also show that these modifications have drastically increased the activity of αAmy8 promoter in rice seedlings under hypoxia. Our results reveal that the G box and duplicated TA box may play important roles in stimulating promoter activity in response to hypoxia in rice. The modified αAmy8 promoter was used to produce the recombinant human epidermal growth factor (hEGF) in rice cells and hypoxic seedlings. We found that the bioactive recombinant hEGF are stably produced and yields are up to 1.8 % of total soluble protein (TSP) in transformed rice cells. The expression level of synthetic hEGF containing preferred rice codon usage comprises up to 7.8 % of TSP in hypoxic transgenic seedlings. Our studies reveal that the modified αAmy8 promoter can be applicable in establishing a novel expression system for the high-level production of foreign proteins in transgenic rice cells and seedlings under hypoxia.
机译:稻米中α-淀粉酶基因的表达不仅是由于缺糖和赤霉素(GA)引起的,而且还受O_2缺乏的诱导。已显示两个水稻α-淀粉酶基因αAmy3和αAmy8的启动子指导水稻悬浮细胞和发芽种子中重组蛋白的高水平生产。在本研究中,我们修改了αAmy8启动子的糖/ GA反应复合体(SRC / GARC)中的顺式作用DNA元件。我们发现添加G框和重复的TA框会导致αAmy8SRC / GARC的高水平表达,并显着增强转化水稻细胞和发芽的转基因水稻种子中的αAmy8启动子活性。我们还表明,这些修饰已大大增加了缺氧条件下水稻幼苗中αAmy8启动子的活性。我们的结果表明,G框和重复的TA框可能在响应水稻缺氧时刺激启动子活性中发挥重要作用。修饰的αAmy8启动子用于在水稻细胞和低氧幼苗中产生重组人表皮生长因子(hEGF)。我们发现,稳定的生物活性重组hEGF产生了,并且产量高达转化稻细胞中总可溶性蛋白(TSP)的1.8%。在缺氧的转基因幼苗中,含有优选水稻密码子的合成hEGF的表达水平高达TSP的7.8%。我们的研究表明,修饰的αAmy8启动子可用于建立一种新型表达系统,在缺氧条件下在转基因水稻细胞和幼苗中高水平生产外源蛋白。

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