Panchapakesan Shanker Shyam S, Ferguson Matthew L, Hayden Eric J, Chen Xin, Hoskins Aaron A, Unrau Peter J
Department of Molecular Biology and Biochemistry, Simon Fraser University, Burnaby, British Columbia V5A 1S6, Canada.
Department of Physics, Boise State University, Boise, Idaho 83725, USA.
RNA. 2017 Oct;23(10):1592-1599. doi: 10.1261/rna.062166.117. Epub 2017 Jul 26.
The characterization of RNA-protein complexes (RNPs) is a difficult but increasingly important problem in modern biology. By combining the compact RNA Mango aptamer with a fluorogenic thiazole orange desthiobiotin (TO1-Dtb or TO3-Dtb) ligand, we have created an RNA tagging system that simplifies the purification and subsequent characterization of endogenous RNPs. Mango-tagged RNP complexes can be immobilized on a streptavidin solid support and recovered in their native state by the addition of free biotin. Furthermore, Mango-based RNP purification can be adapted to different scales of RNP isolation ranging from pull-down assays to the isolation of large amounts of biochemically defined cellular RNPs. We have incorporated the Mango aptamer into the U1 small nuclear RNA (snRNA), shown that the Mango-snRNA is functional in cells, and used the aptamer to pull down a U1 snRNA-associated protein. To demonstrate large-scale isolation of RNPs, we purified and characterized bacterial RNA polymerase holoenzyme (HE) in complex with a Mango-containing 6S RNA. We were able to use the combination of a red-shifted TO3-Dtb ligand and eGFP-tagged HE to follow the binding and release of the 6S RNA by two-color native gel analysis as well as by single-molecule fluorescence cross-correlation spectroscopy. Together these experiments demonstrate how the Mango aptamer in conjunction with simple derivatives of its flurophore ligands enables the purification and characterization of endogenous cellular RNPs in vitro.
RNA-蛋白质复合物(RNP)的表征是现代生物学中一个困难但日益重要的问题。通过将紧密的RNA芒果适配体与荧光噻唑橙脱硫生物素(TO1-Dtb或TO3-Dtb)配体相结合,我们创建了一种RNA标记系统,该系统简化了内源性RNP的纯化及后续表征。带有芒果标签的RNP复合物可固定在链霉亲和素固体支持物上,并通过添加游离生物素以其天然状态回收。此外,基于芒果的RNP纯化可适用于不同规模的RNP分离,从下拉实验到大量生物化学定义的细胞RNP的分离。我们已将芒果适配体整合到U1小核RNA(snRNA)中,证明芒果-snRNA在细胞中具有功能,并使用该适配体下拉与U1 snRNA相关的蛋白质。为了证明RNP的大规模分离,我们纯化并表征了与含芒果的6S RNA形成复合物的细菌RNA聚合酶全酶(HE)。我们能够使用红移的TO3-Dtb配体和eGFP标记的HE的组合,通过双色天然凝胶分析以及单分子荧光互相关光谱法跟踪6S RNA的结合和释放。这些实验共同证明了芒果适配体与其荧光团配体的简单衍生物相结合,如何在体外实现内源性细胞RNP的纯化和表征。