Functional analysis of flavivirus replicase by deep mutational scanning of dengue NS5
Suphatrakul, A.; Posiri, P.; Srisuk, N.; Nantachokchawapan, R.; Onnome, S.; Mongkolsapaya, J.; Siridechadilok, B.
Show abstract
Flavivirus NS5 is multi-functional viral protein that play critical roles in virus replication, evolution, and immune antagonism against the hosts. Its error-prone replicase activity copies viral RNA for progeny virus particles and shapes virus evolution. Its methyltransferase activity and STAT2-targeting activity compromise type-I interferon signalling, dampening protective immune response during infection. It interacts with several host factors to shape the host-cell environment for virus replication. Thus, NS5 represents a critical target for both vaccine and antiviral drug development. Here, we performed deep mutational scanning (DMS) on the NS5 of dengue virus serotype 2 in mammalian cells. In combination with available structural and biochemical data, the comprehensive single amino-acid mutational data corroborated key residues and interactions involved in enzymatic functions of the replicase and suggested potential plasticity in NS5 guanylyl transferase. Strikingly, we identified that a set of strictly conserved residues in the motifs lining the replicase active site could tolerate mutations, suggesting additional roles of the priming loop in viral RNA synthesis and possible strategies to modulate the error rate of viral replicase activity through active-site engineering. Our DMS dataset and NS5 libraries could provide a framework and a resource to investigate molecular, evolutionary, and immunological aspects of NS5 functions, with relevance to vaccine and antiviral drug development.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Bipartite viral RNA genome heterodimerization influences genome packaging and virion thermostability 96%
- Accumulated metagenomic studies reveal recent migration, whole genome evolution, and undiscovered diversity of orthomyxoviruses 95%
- An intra-family conserved high-order RNA structure within the M ORF is important for arterivirus subgenomic RNA accumulation and infectious virus production 94%
Similar papers in this journal
- Engineering, Decoding And Systems-Level Characterization Of Chimpanzee Cytomegalovirus 96%
- Aviadenovirus structure: a highly thermostable capsid in the absence of stabilizing proteins 95%
- A novel ilarvirus protein is expressed via stop codon readthrough and suppresses RDR6-dependent RNA silencing 95%
Similar papers in this journal
- Structural features stabilized by divalent cation coordination within hepatitis E virus ORF1 are critical for viral replication 97%
- Discovery of several thousand highly diverse circular DNA viruses 96%
- Comprehensive Annotations of Human Herpesvirus 6A and 6B Genomes Reveal Novel and Conserved Genomic Features 96%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.