Products/Services Used | Details | Operation |
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Catalog Peptides> | Proteins were detected using mouse monoclonal anti-Actin (Thermo Scientific, MS-1295), rabbit monoclonal anti-IFIT1 (Cell Signalling, D2X9Z), rabbit polyclonal anti-GFP (Abcam, ab290), mouse monoclonal anti-IAV NP (Center for Therapeutic Antibody Discovery at the Icahn School of Medicine at Mount Sinai, clone HT103), mouse monoclonal anti-IAV NS1 (Center for Therapeutic Antibody Discovery at the Icahn School of Medicine at Mount Sinai, clone 1A7), mouse monoclonal anti-IAV M1/M2 (Center for Therapeutic Antibody Discovery at the Icahn School of Medicine at Mount Sinai, clone E10), mouse monoclonal anti-SeV NP (Center for Therapeutic Antibody Discovery at the Icahn School of Medicine at Mount Sinai, clone 6H4), rabbit polyclonal anti-HPIV3 NP (GenScript, custom made against peptide: CNINSSETSFHKPTG),), mouse monoclonal anti-EBOV NP (Invitrogen, MA5-29991) and previously described (Amanat et al., 2018) mouse monoclonal anti-LASV GP (generously provided by Dr. F. Krammer, KL-AV-1B3) primary antibodies. | Get A Quote |
Cellular biology has a uniformity not shared amongst viruses. This is perhaps best exemplified by negative-sense RNA viruses that encode their genetic material as a ribonucleoprotein complex composed of genome, RNA-dependent RNA polymerase, and the nucleoprotein. Here we demonstrate that limiting nucleoprotein availability not only universally culminates in a replicative catastrophe for negative-sense RNA viruses, but it results in the production of aberrant genomic material and induction of the interferon-based host defenses. This dynamic illustrates the tremendous stress imposed on negative-sense RNA viruses during replication as genomic products accumulate in an environment that requires an increasing demand... More