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高选择性核糖核肽受体的逐步塑造

Stepwise molding of a highly selective ribonucleopeptide receptor.

作者信息

Sato Shin-ichi, Fukuda Masatora, Hagihara Masaki, Tanabe Yukiko, Ohkubo Katsutoshi, Morii Takashi

机构信息

Institute of Advanced Energy, Kyoto University, Japan.

出版信息

J Am Chem Soc. 2005 Jan 12;127(1):30-1. doi: 10.1021/ja0445589.

Abstract

The structural characteristics of RNA-peptide (RNP) complexes are suitable for molding of a ligand-binding pocket of the RNP complex in a stepwise manner. The first step involves molding of the RNA subunit by in vitro selection of an RNP pool originating from an RNA library and the peptide, as previously reported for the construction of an ATP-binding RNP complex from an RRE RNA-Rev peptide complex. The second step involves selection from an RNP library consisting of Rev peptides with randomized amino acid residues and the RNA subunit selected in the first molding. The ATP-binding pocket produced by sequential molding of RNA and peptide subunits shows higher affinity to ATP and a distinct specificity for ATP versus dATP as compared to the ATP-binding RNP receptor in which only the RNA subunit has been molded. The second step selection from the peptide-based RNP library allows expansion of the ATP recognition surface, consisting of both RNA and peptide subunits, to enhance the affinity and selectivity to discriminate ATP against dATP. Our approach of stepwise molding offers the advantage of increasing the diversity of the RNP library by utilizing characteristics of different biopolymers. The ribonucleopeptide-based, multi-subunit approach is also extendable to other biomacromolecular assemblies, which may yield artificial receptors and enzymes with increased specificity and more diverse chemical activities.

摘要

RNA-肽(RNP)复合物的结构特征适合于逐步塑造RNP复合物的配体结合口袋。第一步涉及通过体外筛选源自RNA文库和肽的RNP库来塑造RNA亚基,如先前报道的从RRE RNA-Rev肽复合物构建ATP结合RNP复合物。第二步涉及从由具有随机氨基酸残基的Rev肽和在第一次塑造中选择的RNA亚基组成的RNP文库中进行筛选。与仅塑造了RNA亚基的ATP结合RNP受体相比,通过RNA和肽亚基的顺序塑造产生的ATP结合口袋对ATP具有更高的亲和力,并且对ATP与dATP具有明显的特异性。从基于肽的RNP文库中进行的第二步筛选允许扩展由RNA和肽亚基组成的ATP识别表面,以增强区分ATP与dATP的亲和力和选择性。我们的逐步塑造方法具有利用不同生物聚合物的特性增加RNP文库多样性的优点。基于核糖核肽的多亚基方法也可扩展到其他生物大分子组装体,这可能产生具有更高特异性和更多样化化学活性的人工受体和酶。

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