Severe fever with thrombocytopenia syndrome virus (SFTSV), an emerging highly pathogenic bunyavirus, poses a significant public health threat with a case fatality rate of up to 30%. The viral nucleocapsid protein (NP) encapsidates the genomic RNA to form a ribonucleoprotein (RNP) complex, which is critical for transcription and replication. However, the molecular mechanism underlying SFTSV RNA encapsidation remains poorly understood, largely due to the lack of structural information on the NP-RNA complex. Here, we report a cryo-electron microscopy structure of the SFTSV NP in complex with single-stranded RNA. The structure reveals a pentameric NP assembly that sequesters RNA along the inner surface of the oligomeric ring in a sequence-independent manner. Strikingly, all the RNA bases face the protein, rendering them inaccessible for transcription and replication. Each NP subunit accommodates four nucleotides within an evolutionarily conserved hydrophobic cleft, with an additional two to three nucleotides bound at the inter-subunit interface. The functional importance of the NP-RNA interactions is further corroborated by a minigenome-based assay. This work provides structural insight into RNA encapsidation by SFTSV NP and offers a foundation for the rational design of antiviral therapeutics targeting this essential viral protein.IMPORTANCESevere fever with thrombocytopenia syndrome virus (SFTSV) is a highly pathogenic bunyavirus that causes severe hemorrhagic fever, leukopenia, thrombocytopenia, and multi-organ failure, with a case fatality rate of up to 30%. No licensed vaccines or specific antiviral therapies are currently available. The viral nucleocapsid protein (NP) is essential for viral transcription and replication, forming a ribonucleoprotein complex (RNP) by encapsidating viral genomic RNA. However, the structural basis of RNA recognition and encapsidation by SFTSV NP remains poorly understood. In this study, we determined a cryo-electron microscopy structure of the SFTSV NP-RNA complex. Structural comparisons and evolutionary conservation analysis of NPs across the family Phenuiviridae uncovered a conserved RNA-binding mode among phenuiviruses, suggesting a shared RNA encapsidation mechanism among related viruses. Our findings provide critical structural insights into SFTSV RNA encapsidation and will aid future efforts to develop antivirals against SFTSV and related pathogenic viruses.
Structural insight into RNA encapsidation by the severe fever with thrombocytopenia syndrome virus nucleocapsid protein.
对发热伴血小板减少综合征病毒核衣壳蛋白包裹 RNA 的结构性见解。
阅读:3
| 期刊: | mBio | 影响因子: | 4.700 |
| 时间: | 2025 | 起止号: | 2025 Dec 10; 16(12):e0238125 |
| doi: | 10.1128/mbio.02381-25 | ||
特别声明
1、本页面内容包含部分的内容是基于公开信息的合理引用;引用内容仅为补充信息,不代表本站立场。
2、若认为本页面引用内容涉及侵权,请及时与本站联系,我们将第一时间处理。
3、其他媒体/个人如需使用本页面原创内容,需注明“来源:[生知库]”并获得授权;使用引用内容的,需自行联系原作者获得许可。
4、投稿及合作请联系:info@biocloudy.com。