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利用酵母三杂交系统鉴定与韧皮部移动mRNA相互作用的蛋白质。

Using the Yeast Three-Hybrid System to Identify Proteins that Interact with a Phloem-Mobile mRNA.

机构信息

Plant Biology Major, Iowa State University Ames, IA, USA.

出版信息

Front Plant Sci. 2012 Aug 27;3:189. doi: 10.3389/fpls.2012.00189. eCollection 2012.

Abstract

Heterografting and RNA transport experiments have demonstrated the long-distance mobility of StBEL5 RNA, its role in controlling tuber formation, and the function of the 503-nt 3' untranslated region (UTR) of the RNA in mediating transport. Because the 3' UTR of StBEL5 is a key element in regulating several aspects of RNA metabolism, a potato leaf cDNA library was screened using the 3' UTR of StBEL5 as bait in the yeast three-hybrid (Y3H) system to identify putative partner RNA-binding proteins (RBPs). From this screen, 116 positive cDNA clones were isolated based on nutrient selection, HIS3 activation, and lacZ induction and were sequenced and classified. Thirty-five proteins that were predicted to function in either RNA- or DNA-binding were selected from this pool. Seven were monitored for their expression profiles and further evaluated for their capacity to bind to the 3' UTR of StBEL5 using β-galactosidase assays in the Y3H system and RNA gel-shift assays. Among the final selections were two RBPs, a zinc finger protein, and one protein, StLSH10, from a family involved in light signaling. In this study, the Y3H system is presented as a valuable tool to screen and verify interactions between target RNAs and putative RBPs. These results can shed light on the dynamics and composition of plant RNA-protein complexes that function to regulate RNA metabolism.

摘要

异种移植和RNA转运实验证明了StBEL5 RNA的长距离移动性、其在控制块茎形成中的作用以及该RNA的503个核苷酸的3'非翻译区(UTR)在介导转运中的功能。由于StBEL5的3'UTR是调节RNA代谢多个方面的关键元件,因此在酵母三杂交(Y3H)系统中,以StBEL5的3'UTR为诱饵筛选马铃薯叶片cDNA文库,以鉴定推定的RNA结合蛋白(RBP)伴侣。通过该筛选,基于营养选择、HIS3激活和lacZ诱导分离出116个阳性cDNA克隆,并进行测序和分类。从该文库中选择了35种预测在RNA或DNA结合中起作用的蛋白质。使用Y3H系统中的β-半乳糖苷酶测定和RNA凝胶迁移测定,监测了其中7种蛋白质的表达谱,并进一步评估了它们与StBEL5的3'UTR结合的能力。最终筛选出的有两种RBP、一种锌指蛋白和一种来自参与光信号传导家族的蛋白质StLSH10。在本研究中,Y3H系统被视为筛选和验证目标RNA与推定RBP之间相互作用的有价值工具。这些结果可以揭示植物RNA-蛋白质复合物在调节RNA代谢中作用的动态变化和组成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/76f0/3427875/a23048f03347/fpls-03-00189-g001.jpg

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