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Mutated Polyadenylation Signals for Controlling Expression Levels of Multiple Genes in Mammalian Cells

机译:控制哺乳动物细胞中多个基因表达水平的突变聚腺苷酸信号

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摘要

A set of mutated SV40 early polyadenylation signals (SV40pA) with varying strengths is generated by mutating the AATAAA sequence in the wild-type SV40pA. They are shown to control the expression level of a gene over a 10-fold range Using luciferase reporter genes in transient transfection assays. The relative strength of these SV40pA variants remains similar under three commonly used mammalian promoters and in five mammalian cell lines. Application of SV40pA variants for controlling expression level of multiple genes is demonstrated in a study of monoclonal antibody (mAb) synthesis in mammalian cells. By using SV40pA variants of different strengths, the expression of light chain (LC) and heavy chain (HC) genes encoded in a single vector is independently altered which results in different ratios of LC to HC expression spanning a range from 0.24 to 16.42. The changes in gene expression are determined by measuring mRNA levels and intracellular LC and HC polypeptides. It is found that a Substantial decrease of HC expression, which increases the LC/HC mRNA ratio, only slightly reduces mAb production. However, reducing the LC expression by a similar magnitude, which decreases the LC/HC mRNA ratio results in a sharp decline of mAb production to trace amounts. This set of SV40pA variants offers a new tool for accurate control of the relative expression levels of multiple genes. It will have wide-ranging applications in fields related to the study of biosynthesis of multi-subunit proteins, proteomic research on protein interactions, and multi-gene metabolic engineering.
机译:通过突变野生型SV40pA中的AATAAA序列,可以产生一组具有不同强度的突变的SV40早期聚腺苷酸化信号(SV40pA)。使用荧光素酶报道基因在瞬时转染测定中,它们可将基因的表达水平控制在10倍范围内。在三个常用的哺乳动物启动子和五个哺乳动物细胞系中,这些SV40pA变体的相对强度仍然相似。 SV40pA变体在控制多个基因表达水平中的应用已在哺乳动物细胞中单克隆抗体(mAb)合成的研究中得到证明。通过使用不同强度的SV40pA变体,单个载体中编码的轻链(LC)和重链(HC)基因的表达被独立地改变,从而导致LC与HC表达的不同比率介于0.24到16.42之间。基因表达的变化是通过测量mRNA水平以及细胞内LC和HC多肽来确定的。发现HC表达的显着降低,其增加了LC / HC mRNA的比例,仅略微降低了mAb的产生。但是,将LC表达降低相似的幅度会降低LC / HC mRNA的比例,从而导致mAb产量急剧下降至痕量。这套SV40pA变体为精确控制多个基因的相对表达水平提供了一种新工具。它将在与多亚基蛋白质的生物合成研究,蛋白质相互作用的蛋白质组学研究以及多基因代谢工程等领域相关的广泛应用。

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