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Solid-phase translation and RNA–protein fusion: a novel approach for folding quality control and direct immobilization of proteins using anchored mRNA

机译:固相翻译和RNA-蛋白质融合:折叠质量控制和使用锚定的mRNA直接固定化蛋白质的新方法

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摘要

A novel cell-free translation system is described in which template-mRNA molecules were captured onto solid surfaces to simultaneously synthesize and immobilize proteins in a more native-state form. This technology comprises a novel solid-phase approach to cell-free translation and RNA–protein fusion techniques. A newly constructed biotinylated linker-DNA which enables puromycin-assisted RNA–protein fusion is ligated to the 3′ ends of the mRNA molecules to attach the mRNA-template on a streptavidin-coated surface and further to enable the subsequent reactions of translation and RNA–protein fusion on surface. The protein products are therefore directly immobilized onto solid surfaces and furthermore were discovered to adopt a more native state with proper protein folding and superior biological activity compared with conventional liquid-phase approaches. We further validate this approach via the production of immobilized green fluorescent protein (GFP) on microbeads and by the production and assay of aldehyde reductase (ALR) enzyme with 4-fold or more activity. The approach developed in this study may enable to embrace the concept of the transformation of ‘RNA chip-to-protein chip’ using a solid-phase cell-free translation system and thus to the development of high-throughput microarray platform in the field of functional genomics and in vitro evolution.
机译:描述了一种新颖的无细胞翻译系统,其中模板mRNA分子被捕获到固体表面上,以更天然的形式同时合成和固定蛋白质。这项技术包括一种用于无细胞翻译和RNA蛋白质融合技术的新型固相方法。能够使嘌呤霉素辅助的RNA-蛋白质融合的新构建的生物素化连接子-DNA连接到mRNA分子的3'端,从而将mRNA模板附着在链霉亲和素包被的表面上,并进一步使翻译和RNA的后续反应–表面蛋白融合。因此,将蛋白质产物直接固定在固体表面上,并且与常规液相方法相比,还发现其具有更天然的状态,具有适当的蛋白质折叠和优异的生物学活性。我们通过在微珠上生产固定的绿色荧光蛋白(GFP)以及通过生产和测定具有4倍或更多活性的醛还原酶(ALR)酶来进一步验证这种方法。这项研究中开发的方法可能能够包含使用固相无细胞翻译系统将“ RNA芯片转化为蛋白芯片”的概念,从而促进高通量微阵列平台的发展。功能基因组学和体外进化。

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