Pabit Suzette A, Chen Yen-Lin, Usher Emery T, Cook Erik C, Pollack Lois, Showalter Scott A
School of Applied and Engineering Physics, Cornell University, Ithaca, New York.
Department of Biochemistry and Molecular Biology, The Pennsylvania State University, University Park, Pennsylvania.
Biophys J. 2020 Dec 15;119(12):2524-2536. doi: 10.1016/j.bpj.2020.10.038. Epub 2020 Nov 13.
Although conformational dynamics of RNA molecules are potentially important in microRNA (miRNA) processing, the role of the protein binding partners in facilitating the requisite structural changes is not well understood. In previous work, we and others have demonstrated that nonduplex structural elements and the conformational flexibility they support are necessary for efficient RNA binding and cleavage by the proteins associated with the two major stages of miRNA processing. However, recent studies showed that the protein DGCR8 binds primary miRNA and duplex RNA with similar affinities. Here, we study RNA binding by a small recombinant construct of the DGCR8 protein and the RNA conformation changes that result. This construct, the DGCR8 core, contains two double-stranded RNA-binding domains (dsRBDs) and a C-terminal tail. To assess conformational changes resulting from binding, we applied small-angle x-ray scattering with contrast variation to detect conformational changes of primary-miR-16-1 in complex with the DGCR8 core. This method reports only on the RNA conformation within the complex and suggests that the protein bends the RNA upon binding. Supporting work using smFRET to study the conformation of RNA duplexes bound to the core also shows bending. Together, these studies elucidate the role of DGCR8 in interacting with RNA during the early stages of miRNA processing.
尽管RNA分子的构象动力学在微小RNA(miRNA)加工过程中可能具有重要意义,但蛋白质结合伴侣在促进必要的结构变化中所起的作用尚未得到充分理解。在先前的工作中,我们和其他人已经证明,非双链结构元件及其支持的构象灵活性对于与miRNA加工两个主要阶段相关的蛋白质有效结合和切割RNA是必要的。然而,最近的研究表明,蛋白质DGCR8以相似的亲和力结合初级miRNA和双链RNA。在这里,我们研究了DGCR8蛋白的一个小重组构建体与RNA的结合以及由此导致的RNA构象变化。这个构建体,即DGCR8核心,包含两个双链RNA结合结构域(dsRBD)和一个C末端尾巴。为了评估结合导致的构象变化,我们应用了对比变化小角X射线散射来检测与DGCR8核心结合的初级miR-16-1的构象变化。这种方法仅报告复合物内的RNA构象,并表明蛋白质在结合时会使RNA弯曲。使用单分子荧光共振能量转移(smFRET)研究与核心结合的RNA双链体构象的支持性工作也显示出弯曲。这些研究共同阐明了DGCR8在miRNA加工早期阶段与RNA相互作用中的作用。