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Interaction cloning and characterization of RoBPI, a novel protein binding to human Ro ribonucleoproteins.

机译:RoBPI(一种与人Ro核糖核蛋白结合的新型蛋白质)的相互作用克隆和表征。

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Human Ro ribonucleoproteins (RNPs) are autoantigenic particles of unknown function(s) that consist of a 60-kDa protein (Ro60) associated with one hY RNA (hY1-5). Using a modified yeast three-hybrid system, named RNP interaction trap assay (RITA), we cloned a novel Ro RNP-binding protein (RoBPI), based on its property to interact in vivo in yeast with an RNP complex made of recombinant Ro60 (rRo60) protein and hY5 (rhY5) RNA. RoBPI cDNA contains three conserved RNA recognition motifs (RRM) and is present as a family of isoforms differing slightly at their 5' end. The 2.0-kb RoBPI mRNA was detected in all human tissues tested. Highly homologous cDNA sequences were found in banks of expressed sequence tags (ESTs) from mice. Two-hybrid, three-hybrid, and RITA experiments respectively established that 60 kDa RoBPI did not interact in yeast with rRo60 alone, with rhY5 RNA alone, or with bait RNPs consisting of rRo60 and recombinant hY1, hY3, or hY4 RNAs. RoBPI coimmunoprecipitated with Ro RNPs from HeLa cell extracts and partially colocalized with Ro60 in nuclei of cultured cells. Because hY5 RNA and RohY5 RNPs are recent evolutionary additions seen only in primates, but RoBPI seems more conserved, their interaction may represent a gain of function for Ro RNPs. Alternatively, interaction of RohY5 RNPs with RoBPI may have no functional bearing, but may underlie some of the unique biochemical and immunological properties of these RNPs.
机译:人Ro核糖核蛋白(RNP)是功能未知的自身抗原颗粒,由与一个hY RNA(hY1-5)相关的60 kDa蛋白(Ro60)组成。我们使用一种名为RNP相互作用陷阱测定(RITA)的改良酵母三杂交系统,根据其在酵母中与重组Ro60制成的RNP复合物在体内发生相互作用的特性,克隆了一种新型Ro RNP结合蛋白(RoBPI)。 rRo60)蛋白和hY5(rhY5)RNA。 RoBPI cDNA包含三个保守的RNA识别基序(RRM),并以其5'端稍有不同的同种型形式存在。在所有测试的人体组织中均检测到2.0kb RoBPI mRNA。在小鼠的表达序列标签(EST)库中发现了高度同源的cDNA序列。两杂交,三杂交和RITA实验分别确定,酵母中60 kDa RoBPI不会与单独的rRo60,单独的rhY5 RNA或与由rRo60和重组hY1,hY3或hY4 RNA组成的诱饵RNP相互作用。 RoBPI与HeLa细胞提取物中的Ro RNP共沉淀,并与Ro60部分共定位在培养细胞的细胞核中。因为hY5 RNA和RohY5 RNP是仅在灵长类动物中发现的最新进化成员,但RoBPI似乎更为保守,因此它们的相互作用可能代表Ro RNP的功能增强。另外,RohY5 RNP与RoBPI的相互作用可能没有功能,但可能是这些RNP某些独特的生化和免疫学性质的基础。

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