Interaction of SCoV-2 NSP7 or NSP8 alone may cause constriction of the RNA entry channel in NSP12: Implications for novel RdRp inhibitor drug discovery
Singh, D.; Kushwaha, T.; Kulandaisamy, R.; Kumar, V.; Baswal, K.; Tiwari, S. H.; Ghorai, A.; Kumar, M.; Kumar, S.; Polamarasetty, A.; Sehgal, D.; Katika, M. R.; Gadde, S.; Cote, M.; Kayampeta, S. R.; Appaiahgari, M. B.; Inampudi, K. K.
Show abstract
RNA-dependent RNA polymerase (RdRP) is a critical component of the RNA virus life cycle, including SCoV-2. Among the Coronavirus-encoded proteins, non-structural protein 12 (NSP12) exhibits polymerase activity in collaboration with one unit of NSP7 and two units of NSP8, constituting the RdRp holoenzyme. While there is abundant information on SCoV-2 RdRp-mediated RNA replication, the influence of interplay among NSP12, NSP7, and NSP8 on template RNA binding and primer extension activity remains relatively unexplored and poorly understood. Here, we recreated a functional RdRp holoenzyme in vitro using recombinant SCoV-2 NSP12, NSP7, and NSP8, and established its functional activity. Subsequently, molecular interactions among the NSPs in the presence of a variety of templates and their effects on polymerase activity were studied, wherein we found that NSP12 alone exhibited notable polymerase activity that increased significantly in the presence of NSP7 and NSP8. However, this activity was completely shut down, and the template RNA-primer complex was detached from NSP12 when one of the two cofactors was present. Through computational analysis, we found that the template RNA entry channel was more constricted in the presence of one of the two cofactors, which was relatively more constricted in the presence of NSP8 compared to that in the presence of NSP7. In conclusion, we report that NSP7 and NSP8 together synergise to enhance the activity of NSP12, but antagonise when present alone. Our findings have implications for novel drug development, and compounds that obstruct the binding of NSP7 or NSP8 to NSP12 can have lethal effects on viral RNA replication.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- SARS-CoV-2 highly conserved s2m element dimerizes via a kissing complex and interacts with host miRNA-1307-3p 96%
- Interfering with nucleotide excision by the coronavirus 3'-to-5' exoribonuclease 95%
- Mechanistic insights into the activity of SARS-CoV-2 RNA polymerase inhibitors using single-molecule FRET 95%
Similar papers in this journal
- A single mutation attenuates both the transcription termination and RNA-dependent RNA polymerase activity of T7 RNA polymerase 96%
- Insights into the secondary and tertiary structure of the Bovine Viral Diarrhea Virus Internal Ribosome Entry Site 94%
- Duplex formation between the template and the nascent strand in the transcription-regulating sequences determines the site of template switching in SARS - CoV-2 93%
Similar papers in this journal
- Impact of an Oxidative RNA Lesion on in vitro Replication Catalyzed by SARS-CoV-2 RNA-dependent RNA Polymerase 98%
- Motif V acts as a Regulator of Energy Transduction Between the Flavivirus NS3 ATPase and RNA Binding Cleft 96%
- Three Prime Repair Exonuclease 1 preferentially degrades the integration-incompetent HIV-1 DNA through favorable kinetics, thermodynamic, structural and conformational properties. 96%
Similar papers in this journal
- Biophysical and dynamic characterization of a fine-tuned binding of the human Respiratory Syncytial Virus M2-1 core domain to long RNAs 95%
- The enzymatic activity of the nsp14 exoribonuclease is critical for replication of Middle East respiratory syndrome-coronavirus 94%
- 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
- High throughput Bioluminescent assay to characterize and monitor the activity of SARS-CoV-2 Methyltransferases 95%
- The Mimivirus L375 Nudix enzyme hydrolyzes the 5 mRNA cap{-} 94%
- High-throughput Kinetics using Capillary Electrophoresis and Robotics (HiKER) platform used to Study T7, T3, and Sp6 RNA Polymerase Misincorporation 93%
"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.