Shen Cuicui, Zhang Delin, Guan Zeyuan, Liu Yexing, Yang Zhao, Yang Yan, Wang Xiang, Wang Qiang, Zhang QunXia, Fan Shilong, Zou Tingting, Yin Ping
National Key Laboratory of Crop Genetic Improvement and National Centre of Plant Gene Research, Huazhong Agricultural University, Wuhan 430070, China.
Center for Structural Biology, School of Life Science, Tsinghua University, Beijing 100084, China.
Nat Commun. 2016 Apr 18;7:11285. doi: 10.1038/ncomms11285.
As a large family of RNA-binding proteins, pentatricopeptide repeat (PPR) proteins mediate multiple aspects of RNA metabolism in eukaryotes. Binding to their target single-stranded RNAs (ssRNAs) in a modular and base-specific fashion, PPR proteins can serve as designable modules for gene manipulation. However, the structural basis for nucleotide-specific recognition by designer PPR (dPPR) proteins remains to be elucidated. Here, we report four crystal structures of dPPR proteins in complex with their respective ssRNA targets. The dPPR repeats are assembled into a right-handed superhelical spiral shell that embraces the ssRNA. Interactions between different PPR codes and RNA bases are observed at the atomic level, revealing the molecular basis for the modular and specific recognition patterns of the RNA bases U, C, A and G. These structures not only provide insights into the functional study of PPR proteins but also open a path towards the potential design of synthetic sequence-specific RNA-binding proteins.
作为一个庞大的RNA结合蛋白家族,五肽重复序列(PPR)蛋白介导真核生物RNA代谢的多个方面。PPR蛋白以模块化和碱基特异性方式与其靶标单链RNA(ssRNA)结合,可作为用于基因操作的可设计模块。然而,设计型PPR(dPPR)蛋白对核苷酸特异性识别的结构基础仍有待阐明。在此,我们报道了dPPR蛋白与其各自的ssRNA靶标复合物的四个晶体结构。dPPR重复序列组装成一个包裹ssRNA的右手超螺旋螺旋壳。在原子水平上观察到不同PPR编码与RNA碱基之间的相互作用,揭示了RNA碱基U、C、A和G的模块化和特异性识别模式的分子基础。这些结构不仅为PPR蛋白的功能研究提供了见解,也为潜在设计合成序列特异性RNA结合蛋白开辟了道路。