New LIC vectors for production of proteins from genes containing rare codons.

William H Eschenfeldt, Magdalena Makowska-Grzyska, Lucy Stols, Mark I Donnelly, Robert Jedrzejczak, Andrzej Joachimiak
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Abstract

In the effort to produce proteins coded by diverse genomes, structural genomics projects often must express genes containing codons that are rare in the production strain. To address this problem, genes expressing tRNAs corresponding to those codons are typically coexpressed from a second plasmid in the host strain, or from genes incorporated into production plasmids. Here we describe the modification of a series of LIC pMCSG vectors currently used in the high-throughput (HTP) production of proteins to include crucial tRNA genes covering rare codons for Arg (AGG/AGA) and Ile (AUA). We also present variants of these new vectors that allow analysis of ligand binding or co-expression of multiple proteins introduced through two independent LIC steps. Additionally, to accommodate the cloning of multiple large proteins, the size of the plasmids was reduced by approximately one kilobase through the removal of non-essential DNA from the base vector. Production of proteins from core vectors of this series validated the desired enhanced capabilities: higher yields of proteins expressed from genes with rare codons occurred in most cases, biotinylated derivatives enabled detailed automated ligand binding analysis, and multiple proteins introduced by dual LIC cloning were expressed successfully and in near balanced stoichiometry, allowing tandem purification of interacting proteins.

Abstract Image

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用于从含有稀有密码子的基因中生产蛋白质的新型 LIC 载体。
为了生产由不同基因组编码的蛋白质,结构基因组学项目通常必须表达含有生产菌株中罕见密码子的基因。为了解决这个问题,表达与这些密码子相对应的 tRNA 的基因通常由宿主菌株中的第二个质粒或生产质粒中的基因共同表达。在此,我们介绍了对目前用于高通量(HTP)蛋白质生产的一系列 LIC pMCSG 载体的改造,以纳入涵盖 Arg(AGG/AGA)和 Ile(AUA)稀有密码子的关键 tRNA 基因。我们还介绍了这些新载体的变体,它们可以分析配体结合或通过两个独立的 LIC 步骤引入的多种蛋白质的共同表达。此外,为了适应克隆多种大型蛋白质的需要,我们还从基本载体中删除了非必要的 DNA,从而将质粒的大小减少了约一千基。利用该系列核心载体生产的蛋白质验证了所需的增强功能:在大多数情况下,利用稀有密码子基因表达的蛋白质产量更高;生物素化衍生物可进行详细的自动配体结合分析;通过双 LIC 克隆引入的多个蛋白质均能成功表达,且其化学计量接近平衡,从而可串联纯化相互作用的蛋白质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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