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Directed Evolution of a Secretory Leader for the Improved Expression of Heterologous Proteins and Full-Length Antibodies in Saccharomyces cerevisiae

机译:酿酒酵母中异源蛋白和全长抗体表达改善的分泌前导分子的定向进化

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摘要

Because of its eukaryotic nature, Simple fermentation requirements, and pliable genetics, there have been many attempts at improving recombinant protein production in Saccharomyces cerevisiae. These strategies typically involve altering the expression of a native protein thought to be involved in heterologous protein trafficking. Usually, these approaches yield three to tenfold improvements over wild-type strains and are almost always specific to one type of protein. In this study, a library of mutant alpha mating factor I leader peptides (MF alpha 1 pp) is screened for the enhanced secretion of a single-chain antibody. One of the isolated mutants is shown to enhance the secretion of the scFv up to 16-fold over wild type. These leaders also confer a secretory improvement to two other scFvs as well as two additional, structurally unrelated proteins. Moreover, the improved leader sequences, combined with strain engineering, allow for a 180-fold improvement over previous reports in the secretion of full-length, functional, glycosylated human IgG(1). The production of full-length IgG(1) at milligram per liter titers in a simple, laboratory-scale system will significantly expedite drug discovery and reagent synthesis while reducing antibody cloning, production, and characterization costs. Biotechnol. Bioeng. 2009;103: 1192-1201.
机译:由于其真核性质,简单的发酵要求和柔韧的遗传学,已经进行了许多尝试来提高酿酒酵母中重组蛋白的产量。这些策略通常涉及改变被认为与异源蛋白质运输有关的天然蛋白质的表达。通常,这些方法比野生型菌株产生三到十倍的改进,并且几乎总是对一种蛋白质具有特异性。在这项研究中,筛选了突变的α交配因子I前导肽(MF alpha 1 pp)库,以提高单链抗体的分泌。已显示一种分离的突变体可将scFv的分泌提高至野生型的16倍。这些领导者还赋予了另外两个scFv和两个额外的,结构上不相关的蛋白质分泌改善的功能。此外,改进的前导序列与菌株工程技术相结合,在分泌全长,功能化,糖基化人IgG(1)方面比以前的报道提高了180倍。在简单,实验室规模的系统中以毫克每升滴度生产全长IgG(1)将显着加快药物发现和试剂合成的速度,同时降低抗体克隆,生产和表征成本。生物技术。生恩2009; 103:1192-1201。

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