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Improved heterologous protein expression in the chloroplast of Chlamydomonas reinhardtii through promoter and 5 ' untranslated region optimization

机译:通过启动子和5'未转换区域优化改善衣原体雷切拉菌的叶绿体中的异源蛋白表达

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Microalgae have the potential to be a valuable biotechnological platform for the production of recombinant proteins. However, because of the complex regulatory network that tightly controls chloroplast gene expression, heterologous protein accumulation in a wild-type, photosynthetic-competent algal chloroplast remains low. High levels of heterologous protein accumulation have been achieved using the psbA promoter/5' untranslated region (UTR), but only in a psbA-deficient genetic background, because of psbA/D1-dependent auto-attenuation. Here, we examine the effect of fusing the strong 16S rRNA promoter to the 5' UTR of the psbA and atpA genes on transgene expression in the chloroplast of Chlamydomonas reinhardtii. We show that fusion of the 16S promoter had little impact on protein accumulation from the psbA 5' UTR in a psbA-deficient genetic background. Furthermore, the 16S/psbA promoter/UTR fusion was silenced in the presence of wild-type levels of D1 protein, confirming that the psbA 5' UTR is the primary target for D1-dependent auto-repression. However, fusion of the 16S promoter to the atpA 5' UTR significantly boosts mRNA levels and supports high levels of heterologous protein accumulation in photosynthetic-competent cells. The 16S/atpA promoter/UTR drove LUXCT protein accumulation to levels close to that of psbA in a psbA- background, and drove expression of a human therapeutic protein to levels only twofold lower than the psbA 5' UTR. The 16S/atpA promoter/UTR combination should have utility for heterologous protein production when expression from a photosynthetic-competent microalgal strain is required.
机译:微藻具有用于生产重组蛋白的有价值的生物技术平台。然而,由于严重控制叶绿体基因表达的复杂调节网络,野生型的异源蛋白质积累仍然低。使用PSBA启动子/ 5'未转移的区域(UTR)已经实现了高水平的异源蛋白质积累,而是仅在PSBA缺陷的遗传背景下实现,因为PSBA / D1依赖性自动衰减。在这里,我们研究将强16S rRNA启动子融合到PSBA和ATPA基因的5'UTR上的效果对衣原体Reinhardtii叶绿体中的转基质表达的5'utr。我们表明,16S启动子的融合对PSBA 5'UTR中的蛋白质积累几乎没有影响了PSBA缺陷的遗传背景中的蛋白质积累。此外,16S / PSBA启动子/ UTR融合在存在野生型D1蛋白的存在下沉默,证实PSBA 5'UTR是D1依赖性自动抑制的主要目标。然而,16S启动子对ATPA 5'UTR的融合显着提高了MRNA水平,并支持光合兴趣细胞中的高水平异源蛋白质积累。 16S / ATPA启动子/ UTR将LUXCT蛋白质积累推动到PSBA背景中PSBA的水平,并将人类治疗蛋白的表达驱动到仅比PSBA 5'UTR低的双重含量。 16S / ATPA启动子/ UTR组合应该具有许可蛋白质产生的效用,当需要从光合态态的微藻菌株表达时。

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