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H, C and N chemical shift assignment of the stem-loops 5b + c from the 5'-UTR of SARS-CoV-2. | LitMetric

AI Article Synopsis

  • COVID-19 is caused by the SARS-CoV-2 virus, which has a unique RNA genome that is crucial for its replication and translation.
  • The 5'-untranslated region of the virus contains highly conserved structures like branched stem-loop 5 (SL5), which may serve as potential targets for antiviral drug development.
  • This study focuses on the structural analysis of specific regions of the SL5, providing insights that could lead to new therapeutic approaches against COVID-19.

Article Abstract

The ongoing pandemic of the respiratory disease COVID-19 is caused by the SARS-CoV-2 (SCoV2) virus. SCoV2 is a member of the Betacoronavirus genus. The 30 kb positive sense, single stranded RNA genome of SCoV2 features 5'- and 3'-genomic ends that are highly conserved among Betacoronaviruses. These genomic ends contain structured cis-acting RNA elements, which are involved in the regulation of viral replication and translation. Structural information about these potential antiviral drug targets supports the development of novel classes of therapeutics against COVID-19. The highly conserved branched stem-loop 5 (SL5) found within the 5'-untranslated region (5'-UTR) consists of a basal stem and three stem-loops, namely SL5a, SL5b and SL5c. Both, SL5a and SL5b feature a 5'-UUUCGU-3' hexaloop that is also found among Alphacoronaviruses. Here, we report the extensive H, C and N resonance assignment of the 37 nucleotides (nts) long sequence spanning SL5b and SL5c (SL5b + c), as basis for further in-depth structural studies by solution NMR spectroscopy.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8853908PMC
http://dx.doi.org/10.1007/s12104-021-10053-4DOI Listing

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