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Long-chain polyphosphates impair SARS-CoV-2 infection and replication

Sci Signal. 2021-07; 
Veronica Ferrucci, Dae-Young Kong, Fatemeh Asadzadeh, Laura Marrone, Angelo Boccia, Roberto Siciliano, Giuseppina Criscuolo, Camilla Anastasio, Fabrizio Quarantelli, Marika Comegna, Ida Pisano, Margherita Passariello, Ilaria Iacobucci, Rosa Della Monica, Barbara Izzo, Pellegrino Cerino, Giovanna Fusco, Maurizio Viscardi, Sergio Brandi, Bianca Maria Pierri, Giorgia Borriello, Claudia Tiberio, Luigi Atripaldi, Martina Bianchi, Giovanni Paolella, Ettore Capoluongo, Giuseppe Castaldo, Lorenzo Chiariotti, Maria Monti, Claudia De Lorenzo, Kyong-Seop Yun, Stefano Pascarella, Jae-Ho Cheong, Hong-Yeoul Kim, Massimo Zollo
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Mammalian Expression … Limited proteolysis was carried out on human recombinant ACE2-Fc (GenScript) and in parallel on its complexes with polyP120 and polyP8 after preincubation for 2 hours at room temperature in a 10-fold molar excess of polyPs. The experiments were performed directly in … Get A Quote

摘要

Inorganic polyphosphates (polyPs) are linear polymers composed of repeated phosphate (PO ) units linked together by multiple high-energy phosphoanhydride bonds. In addition to being a source of energy, polyPs have cytoprotective and antiviral activities. Here, we investigated the antiviral activities of long-chain polyPs against severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection. In molecular docking analyses, polyPs interacted with several conserved amino acid residues in angiotensin-converting enzyme 2 (ACE2), the host receptor that facilitates virus entry, and in viral RNA-dependent RNA polymerase (RdRp). ELISA and limited proteolysis assays using nano- LC-MS/MS mapped polyP120 binding to... More

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