Chen Shih-Cheng, Xu Cui-Ting, Chang Chuan-Fu, Yang Chia-Shin, Lin Pin-Han, Liu Wei-Min, Chen Yeh, Yu Chien-Hung
National Institute of Cancer Research, National Health Research Institutes, Tainan City, Taiwan.
Department of Biochemistry and Molecular Biology, College of Medicine, National Cheng Kung University, Tainan City, Taiwan.
RNA Biol. 2025 Dec;22(1):1-16. doi: 10.1080/15476286.2025.2471643. Epub 2025 Mar 12.
Packaging signals (PSs) of coronaviruses (CoVs) are specific RNA elements recognized by nucleocapsid (N) proteins that direct the selective packaging of genomic RNAs (gRNAs). These signals have been identified in the coding regions of the nonstructural protein 15 (Nsp 15) in CoVs classified under , a subgenus of betacoronaviruses (beta-CoVs). The PSs in other alpha- and beta-CoVs have been proposed to reside in the 5'-proximal regions of gRNAs, supported by comprehensive phylogenetic evidence. However, experimental data remain limited. In this study, we investigated the interactions between Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2) 5'-proximal gRNA transcripts and N proteins using electrophoretic mobility shift assays (EMSAs). Our findings revealed that the synthesized 5'-proximal gRNA transcripts of CoVs can shift from a major conformation to alternative conformations. We also observed that the conformer comprising multiple stem-loops (SLs) is preferentially bound by N proteins. Deletions of the 5'-proximal structural elements of CoV gRNA transcripts, SL1 and SL5a/b/c in particular, were found to promote the formation of alternative conformations. Furthermore, we identified RNA-binding peptides from a pool derived from SARS-CoV N protein. These RNA-interacting peptides were shown to preferentially bind to wild-type SL5a RNA. In addition, our observations of N protein condensate formation demonstrated that liquid-liquid phase separation (LLPS) of N proteins with CoV-5'-UTR transcripts was influenced by the presence of SL5a/b/c. In conclusion, these results collectively reveal previously uncharacterized binding features between the 5'-proximal transcripts of CoV gRNAs and N proteins.
冠状病毒(CoV)的包装信号(PSs)是被核衣壳(N)蛋白识别的特定RNA元件,这些蛋白指导基因组RNA(gRNA)的选择性包装。这些信号已在属于β冠状病毒(β-CoV)亚属的CoV的非结构蛋白15(Nsp 15)编码区中被鉴定出来。综合系统发育证据表明,其他α和β-CoV中的PSs被认为位于gRNA的5'近端区域。然而,实验数据仍然有限。在本研究中,我们使用电泳迁移率变动分析(EMSA)研究了严重急性呼吸综合征冠状病毒2(SARS-CoV-2)5'近端gRNA转录本与N蛋白之间的相互作用。我们的研究结果表明,合成的CoV 5'近端gRNA转录本可以从主要构象转变为其他构象。我们还观察到,包含多个茎环(SLs)的构象异构体优先被N蛋白结合。发现删除CoV gRNA转录本的5'近端结构元件,特别是SL1和SL5a/b/c,可促进其他构象的形成。此外,我们从SARS-CoV N蛋白衍生的文库中鉴定出RNA结合肽。这些与RNA相互作用的肽被证明优先结合野生型SL5a RNA。此外,我们对N蛋白凝聚物形成的观察表明,N蛋白与CoV-5'-UTR转录本的液-液相分离(LLPS)受SL5a/b/c的存在影响。总之,这些结果共同揭示了CoV gRNAs 5'近端转录本与N蛋白之间以前未被表征的结合特征。