Publication | Open Access
Human Coronavirus 229E Nonstructural Protein 13: Characterization of Duplex-Unwinding, Nucleoside Triphosphatase, and RNA 5′-Triphosphatase Activities
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References
2004
Year
Viral ReplicationViral Polymerase StructureViral Polymerase MechanismMolecular BiologyViral Structural ProteinVirus StructureHcov-229e Nsp13Nonstructural Protein 13Virus GeneViral GeneticsRna 5′-Triphosphatase ActivitiesBiochemistryDna ReplicationVirologyGene ExpressionCell BiologyStructural BiologyNtpase Active SiteMolecular VirologyNatural SciencesPathogenesisMedicineHuman Coronavirus 229E
The human coronavirus 229E (HCoV-229E) replicase gene-encoded nonstructural protein 13 (nsp13) contains an N-terminal zinc-binding domain and a C-terminal superfamily 1 helicase domain. A histidine-tagged form of nsp13, which was expressed in insect cells and purified, is reported to unwind efficiently both partial-duplex RNA and DNA of up to several hundred base pairs. Characterization of the nsp13-associated nucleoside triphosphatase (NTPase) activities revealed that all natural ribonucleotides and nucleotides are substrates of nsp13, with ATP, dATP, and GTP being hydrolyzed most efficiently. Using the NTPase active site, HCoV-229E nsp13 also mediates RNA 5'-triphosphatase activity, which may be involved in the capping of viral RNAs.
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