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Crystal structure and nucleic acid binding mode of CPV NSP9: implications for viroplasm in Reovirales

Nucleic Acids Research. 2024-09; 
Yeda Wang , Hangtian Guo , Yuhao Lu , Wanbin Yang , Tinghan Li , Xiaoyun Ji
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Gene Synthesis The full-length genes encoding BmCPV1 NSP9 (Gen-Bank: AAC27295.1) and rotavirus_NSP31–170 (GenBank:ADW09100.1) were synthesized by GenScript (Nanjing,China). Get A Quote

摘要

Cytoplasmic polyhedrosis viruses (CPVs), like other members of the order Reovirales, produce viroplasms, hubs of viral assembly that shield them from host immunity. Our study investigates the potential role of NSP9, a nucleic acid-binding non-structural protein encoded by CPVs, in viroplasm biogenesis. We determined the crystal structure of the NSP9 core (NSP9ΔC), which shows a dimeric organization topologically similar to the P9-1 homodimers of plant reoviruses. The disordered C-terminal region of NSP9 facilitates oligomerization but is dispensable for nucleic acid binding. NSP9 robustly binds to single- and double-stranded nucleic acids, regardless of RNA or DNA origin. Mutagenesis studies further confirmed ... More

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