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信使 RNA-核糖体复合物在互补 DNA 展示中的作用。

Role of messenger RNA-ribosome complex in complementary DNA display.

机构信息

Janusys Corporation, Skip City, Kawaguchi, Saitama 333-0844, Japan.

出版信息

Anal Biochem. 2013 Jul 15;438(2):97-103. doi: 10.1016/j.ab.2013.03.022. Epub 2013 Apr 1.

Abstract

In vitro display technologies such as ribosome display and messenger RNA (mRNA)/complementary DNA (cDNA) display are powerful methods that can generate library diversities on the order of 10(10-14). However, in mRNA and cDNA display methods, the end use diversity is two orders of magnitude lower than initial diversity and is dependent on the downstream processes that act as limiting factors. We found that in our previous cDNA display protocol, the purification of protein fusions by the use of streptavidin matrices from cell-free translation mixtures had poor efficiency (∼10-15%) that seriously affected the diversity of the purified library. Here, we have investigated and optimized the protocols that provided remarkable purification efficiencies. The stalled ribosome in the mRNA-ribosome complex was found to impede this purification efficiency. Among the various conditions tested, destabilization of ribosomes by appropriate concentration of metal chelating agents in combination with an optimal temperature of 30°C were found to be crucial and effective for nearly complete isolation of protein fusions from the cell-free translation system. Thus, this protocol provided 8- to 10-fold increased efficiency of purification over the previous method and results in retaining the diversity of the library by approximately an order of magnitude-important for directed evolution. We also discuss the possible effects in the fabrication of protein chips.

摘要

体外展示技术,如核糖体展示和信使 RNA(mRNA)/互补 DNA(cDNA)展示,是能够产生 10^10-14 级库多样性的强大方法。然而,在 mRNA 和 cDNA 展示方法中,最终使用的多样性比初始多样性低两个数量级,并且取决于作为限制因素的下游过程。我们发现,在我们之前的 cDNA 展示方案中,使用链霉亲和素基质从无细胞翻译混合物中纯化蛋白融合物的效率很差(约 10-15%),这严重影响了文库的多样性。在这里,我们研究并优化了提供显著纯化效率的方案。发现在 mRNA-核糖体复合物中的核糖体停滞会阻碍这种纯化效率。在测试的各种条件中,发现适当浓度的金属螯合剂使核糖体不稳定,与 30°C 的最佳温度相结合,对于从无细胞翻译系统中几乎完全分离蛋白融合物是至关重要和有效的。因此,该方案提供了比以前方法高 8-10 倍的纯化效率,并且通过大约一个数量级保留了文库的多样性,这对于定向进化很重要。我们还讨论了在蛋白芯片制造中的可能影响。

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