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基于激活蛋白质翻译的合成核糖开关对小分子进行遗传筛选和选择。

Genetic screens and selections for small molecules based on a synthetic riboswitch that activates protein translation.

作者信息

Desai Shawn K, Gallivan Justin P

机构信息

Department of Chemistry and Center for Fundamental and Applied Molecular Evolution, Emory University, 1515 Dickey Drive, Atlanta, Georgia 30322, USA.

出版信息

J Am Chem Soc. 2004 Oct 20;126(41):13247-54. doi: 10.1021/ja048634j.

Abstract

Genetic selection provides the most powerful method to assay large libraries of biomolecules for function. However, harnessing the power of genetic selection for the detection of specific, nonendogenous small-molecule targets in vivo remains a significant challenge. The ability to genetically select for small molecules would provide a reaction-independent mechanism to clone biosynthesis genes from large DNA libraries and greatly facilitate the exploration of large libraries of mutant enzymes for improved synthetic capabilities including altered substrate specificities and enhanced regio- or stereoselectivities. While remarkable progress has been made in developing genetic methods to detect small molecules in vivo, many of these methods rely on engineering small-molecule-protein interactions which remains a difficult problem, and the potential for some of these systems to assay large libraries is limited by the low transformation efficiency and long doubling time of yeast relative to bacteria. Herein, we demonstrate that synthetic riboswitches that activate protein translation in response to a specific small molecule can be used to perform sensitive genetic screens and selections for the presence of small molecules in Escherichia coli. We further demonstrate that the exquisite molecular discrimination properties of aptamers selected in vitro translate directly into an in vivo genetic selection system. Finally, we demonstrate that a cell harboring a synthetic riboswitch with a particular ligand specificity can be selectively amplified from a million-fold larger pool of cells containing mutant riboswitches that respond to a closely related ligand, suggesting that it is possible to use genetic selection in E. coli to discover synthetic riboswitches with new ligand specificities from libraries of mutant riboswitches.

摘要

基因筛选提供了检测生物分子功能大型文库的最有效方法。然而,利用基因筛选的能力在体内检测特定的、非内源性小分子靶点仍然是一项重大挑战。对小分子进行基因筛选的能力将提供一种与反应无关的机制,用于从大型DNA文库中克隆生物合成基因,并极大地促进对突变酶大型文库的探索,以提高其合成能力,包括改变底物特异性以及增强区域或立体选择性。虽然在开发体内检测小分子的基因方法方面已经取得了显著进展,但其中许多方法依赖于构建小分子-蛋白质相互作用,这仍然是一个难题,而且这些系统中一些检测大型文库的潜力受到酵母相对于细菌的低转化效率和长倍增时间的限制。在此,我们证明了响应特定小分子激活蛋白质翻译的合成核糖开关可用于在大肠杆菌中对小分子的存在进行灵敏的基因筛选和选择。我们进一步证明,体外选择的适体的精确分子识别特性可直接转化为体内基因选择系统。最后,我们证明,含有具有特定配体特异性的合成核糖开关的细胞可以从含有响应密切相关配体的突变核糖开关的百万倍大的细胞池中选择性扩增,这表明有可能在大肠杆菌中利用基因筛选从突变核糖开关文库中发现具有新配体特异性的合成核糖开关。

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