Bouffard P, Brière F, Wellinger R J, Boire G
Rheumatology Division, Faculty of Medicine, Université de Sherbrooke, QC, Canada.
Biotechniques. 1999 Oct;27(4):790-6. doi: 10.2144/99274rr02.
We describe an adaptation of the yeast three-hybrid system that allows the reconstitution in vivo of tripartite (protein-RNA-protein) ribonucleoproteins (RNPs). To build and try this system that we called RNP interaction trap assay (RITA), we used as a model the autoantigenic Ro RNPs. hY RNAs bear distinct binding sites for Ro60 and La proteins, and Ro RNPs are thus physiologically tripartite (Ro60/hY RNA/La). Using recombinant La (rLa) and Ro60 (rRo60) proteins and recombinant hY RNAs (rhY) co-expressed in yeast, we found that RNPs made of rRo60/rhY/rLa were readily reassembled. Reconstitution of tripartite RNPs was critically dependent on the presence of an appropriate Ro60 binding site on the recombinant RNA. The RITA assay was further used to detect (rRo60/rhY RNP)-binding proteins from a HeLa cell cDNA library, allowing specific identification of La and of a novel Ro RNP-binding protein (RoBPI) in more than 70% of positive clones. RITA assay may complement already available two- and three-hybrid systems to characterize RNP-binding proteins by allowing the in vivo identification of interactions strictly dependent upon the simultaneous presence of a protein and of its cognate RNA.
我们描述了一种酵母三杂交系统的改良方法,该方法可实现三方(蛋白质-RNA-蛋白质)核糖核蛋白(RNP)在体内的重组。为构建并试用我们称为RNP相互作用捕获分析(RITA)的该系统,我们以自身抗原性Ro核糖核蛋白作为模型。hY RNA带有与Ro60和La蛋白不同的结合位点,因此Ro核糖核蛋白在生理上是三方的(Ro60/hY RNA/La)。利用在酵母中共表达的重组La(rLa)和Ro60(rRo60)蛋白以及重组hY RNA(rhY),我们发现由rRo60/rhY/rLa组成的核糖核蛋白很容易重新组装。三方核糖核蛋白的重组严重依赖于重组RNA上适当的Ro60结合位点的存在。RITA分析进一步用于从HeLa细胞cDNA文库中检测(rRo60/rhY核糖核蛋白)结合蛋白,在超过70%的阳性克隆中可特异性鉴定出La和一种新型Ro核糖核蛋白结合蛋白(RoBPI)。RITA分析可以补充现有的双杂交和三杂交系统,通过在体内鉴定严格依赖于蛋白质及其同源RNA同时存在的相互作用来表征核糖核蛋白结合蛋白。