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Simultaneous Surface Display and Secretion of Proteins from Mammalian Cells Facilitate Efficient in Vitro Selection and Maturation of Antibodies

机译:同时显示和从哺乳动物细胞分泌蛋白有助于有效的体外选择和抗体成熟。

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摘要

A mammalian expression system has been developed that permits simultaneous cell surface display and secretion of the same protein through alternate splicing of pre-mRNA. This enables a flexible system for in vitro protein evolution in mammalian cells where the displayed protein phenotype remains linked to genotype, but with the advantage of soluble protein also being produced without the requirement for any further recloning to allow a wide range of assays, including biophysical and cell-based functional assays, to be used during the selection process. This system has been used for the simultaneous surface presentation and secretion of IgG during antibody discovery and maturation. Presentation and secretion of monomeric Fab can also be achieved to minimize avidity effects. Manipulation of the splice donor site sequence enables control of the relative amounts of cell surface and secreted antibody. Multi-domain proteins may be presented and secreted in different formats to enable flexibility in experimental design, and secreted proteins may be produced with epitope tags to facilitate high-throughput testing. This system is particularly useful in the context of in situ mutagenesis, as in the case of in vitro somatic hypermutation.
机译:已经开发了哺乳动物表达系统,其允许通过交替剪接pre-mRNA同时显示细胞表面和分泌相同的蛋白质。这为哺乳动物细胞中的体外蛋白质进化提供了灵活的系统,其中所展示的蛋白质表型仍然与基因型相关,但是具有可溶蛋白质的优势,而且无需进一步克隆即可进行广泛的测定,包括生物物理测定和基于细胞的功能测定,将在选择过程中使用。该系统已用于抗体发现和成熟过程中同时表面呈现和分泌IgG。还可以实现单体Fab的呈递和分泌,以最小化亲和力效应。剪接供体位点序列的操纵能够控制细胞表面和分泌的抗体的相对量。可以以不同的形式展示和分泌多域蛋白,以实现实验设计的灵活性,并且分泌的蛋白可以与表位标签一起生产,以促进高通量测试。在体外诱变的情况下,该系统在原位诱变的情况下特别有用。

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