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Expression of Antibodies Using Single-Open Reading Frame Vector Design and Polyprotein Processing from Mammalian Cells

机译:使用单阅读框载体设计表达抗体并从哺乳动物细胞中加工多蛋白

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摘要

We describe a novel polyprotein precursor-based approach to express antibodies from mammalian cells. Rather than expressing heavy and light chain proteins from separate expression units,the antibody heavy and light chains are contained in one single-open reading frame (sORF) separated by an intein gene fused in frame. Inside mammalian cells this ORF is transcribed into a single mRNA,and translated into one polypeptide. The antibody heavy and light chains are separated posttranslationally,assembled into the functional antibody molecule,and secreted into culture medium. It is demonstrated that Pol I intein from P. horikoshii mediates protein splicing and cleavage reactions in mammalian cells,in the context of antibody heavy and light chain amino acid sequences. To allow the separation of antibody heavy chain,light chain,and the intein,we investigated a number of intein mutations designed to inhibit intein-mediated splicing but preserve cleavage reactions. We have also designed constructs in which the signal peptide downstream from intein has altered hydrophobicity. The use of some of these mutant constructs resulted in more efficient antibody secretion,highlighting areas that can be further explored in improving such an expression system. An antibody secreted using one of the sORF constructs was characterized. This antibody has correct N-terminal sequences for both of its heavy and light chains,correct heavy and light chain MW as well as intact MW as measured by mass spectrometry. Its affinity to antigen,as measured by surface plasmon resonance (SPR),is indistinguishable from that of the same antibody produced using conventional method.
机译:我们描述了一种新型的基于多蛋白前体的方法来表达来自哺乳动物细胞的抗体。抗体重链和轻链不是包含来自单独表达单元的重链和轻链蛋白,而是包含在一个单开放阅读框(sORF)中,该阅读框被框内融合的intein基因隔开。在哺乳动物细胞内,该ORF被转录成单个mRNA,并被翻译成一个多肽。抗体的重链和轻链在翻译后被分离,组装成功能性抗体分子,并分泌到培养基中。结果表明,在抗体重链和轻链氨基酸序列的背景下,霍氏疟原虫的Pol I内含肽介导了哺乳动物细胞中的蛋白剪接和切割反应。为了分离抗体重链,轻链和内含肽,我们研究了许多内含肽突变,旨在抑制内含肽介导的剪接,但保留裂解反应。我们还设计了其中内含肽下游的信号肽改变了疏水性的构建体。这些突变体构建物中的一些的使用导致更有效的抗体分泌,突出了可以在改善这种表达系统中进一步探索的领域。表征了使用一种sORF构建体分泌的抗体。该抗体的重链和轻链均具有正确的N端序列,通过质谱法测定的重链和轻链MW以及完整的MW均正确。通过表面等离振子共振(SPR)测量,其对抗原的亲和力与使用常规方法生产的相同抗体没有区别。

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