info:eu-repo/semantics/article
Nucleotide-dependent dynamics of the Dengue NS3 helicase
Fecha
2020-08Registro en:
Sarto, Carolina; Kaufman, Sergio Benjamín; Estrin, Dario Ariel; Arrar, Mehrnoosh; Nucleotide-dependent dynamics of the Dengue NS3 helicase; Elsevier Science; Biochimica Et Biophysica Acta-proteins And Proteomics; 1868; 8; 8-2020; 1-6
1570-9639
CONICET Digital
CONICET
Autor
Sarto, Carolina
Kaufman, Sergio Benjamín
Estrin, Dario Ariel
Arrar, Mehrnoosh
Resumen
Dengue represents a substantial public health burden, particularly in low-resource countries. Non-structural protein 3 (NS3) is a multifunctional protein critical in the virus life cycle and has been identified as a promising anti-viral drug target. Despite recent crystallographic studies of the NS3 helicase domain, only subtle structural nucleotide-dependent differences have been identified, such that its coupled ATPase and helicase activities remain mechanistically unclear. Here we use molecular dynamics simulations to explore the nucleotide-dependent conformational landscape of the Dengue virus NS3 helicase and identify substantial changes in the protein flexibility during the ATP hydrolysis cycle. We relate these changes to the RNA-protein interactions and proposed translocation models for other monomeric helicases. Furthermore, we report a novel open-loop conformation with a likely escape route for Pi after hydrolysis, providing new insight into the conformational changes that underlie the ATPase activity of NS3.