Peled-Zehavi Hadas, Horiya Satoru, Das Chandreyee, Harada Kazuo, Frankel Alan D
Department of Biochemistry and Biophysics, University of California-San Francisco, 513 Parnassus Avenue, San Francisco, CA 94143-0448, USA.
RNA. 2003 Feb;9(2):252-61. doi: 10.1261/rna.2152303.
The arginine-rich domains of several RNA-binding proteins have been shown to bind their cognate RNAs with high affinities and specificities as isolated peptides, adopting different conformations within different complexes. The sequence simplicity and structural diversity of the arginine-rich motif has made it a good framework for constructing combinatorial libraries and identifying novel RNA-binding peptides, including those targeted to the HIV Rev response element (RRE). Here we describe a modified transcription antitermination reporter assay engineered with kanamycin resistance that enables larger in vivo screens (approximately 10(9) sequences) than previously possible. We show that the assay detects only specific RNA-protein complexes, and that binders are enriched at least 300-fold per round of selection. We screened a large peptide library in which amino acids with charged, polar, and small side chains were randomly distributed within a polyarginine framework and identified a set of high affinity RRE-binding peptides. Most contain glutamine at one particular peptide position, and the best peptides display significantly higher antitermination activities than Rev or other previously described high-affinity RRE-binding peptides. The kanamycin antitermination (KAN) assay should be useful for screening relatively large libraries and thereby facilitate identification of novel RNA binders.
几种RNA结合蛋白富含精氨酸的结构域已被证明,作为分离的肽段,它们能以高亲和力和特异性结合其同源RNA,在不同复合物中呈现不同构象。富含精氨酸基序的序列简单性和结构多样性使其成为构建组合文库和鉴定新型RNA结合肽的良好框架,包括那些靶向HIV Rev反应元件(RRE)的肽段。在此,我们描述了一种经改造的具有卡那霉素抗性的转录抗终止报告基因检测方法,该方法能够进行比以前更大规模的体内筛选(约10^9个序列)。我们表明,该检测方法仅能检测特定的RNA-蛋白质复合物,并且在每一轮筛选中,结合物至少富集300倍。我们筛选了一个大型肽库,其中带电荷、极性和小侧链的氨基酸随机分布在聚精氨酸框架内,并鉴定出一组高亲和力的RRE结合肽。大多数肽在一个特定的肽位置含有谷氨酰胺,并且最佳肽段显示出比Rev或其他先前描述的高亲和力RRE结合肽显著更高的抗终止活性。卡那霉素抗终止(KAN)检测方法对于筛选相对较大的文库应该是有用的,从而有助于鉴定新型RNA结合物。