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Force-dependent stimulation of RNA unwinding by SARS-CoV-2 nsp13 helicase

biorxiv. 2020-07-01; 
Keith J Mickolajczyk, Patrick M M Shelton, Michael Grasso, Xiaocong Cao, Sara R Warrington, Amol Aher, Shixin Liu, Tarun M Kapoor
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Plasmid DNA Preparation … Page 7. 7 MATERIALS AND METHODS Cloning The nsp13 plasmid was generated as previously described 5. Briefly, the OptimumGene method (Genscript) was used to optimize the full-length SARS-CoV-2 nsp13 helicase sequence for insect cell expression … Get A Quote

摘要

The superfamily-1 helicase non-structural protein 13 (nsp13) is required for SARS-CoV-2 replication, making it an important antiviral therapeutic target. The mechanism and regulation of nsp13 has not been explored at the single-molecule level. Specifically, force-dependent unwinding experiments have yet to be performed for any coronavirus helicase. Here, using optical tweezers, we find that nsp13 unwinding frequency, processivity, and velocity increase substantially when a destabilizing force is applied to the dsRNA, suggesting a passive unwinding mechanism. These results, along with bulk assays, depict nsp13 as an intrinsically weak helicase that can be potently activated by picoNewton forces. Such force-depen... More

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