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10.1007/s12104-021-10026-7

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suck abstract from ncbi


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pmid33928512      Biomol+NMR+Assign 2021 ; 15 (2): 335-340
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  • (1)H, (13)C, (15)N and (31)P chemical shift assignment for stem-loop 4 from the 5 -UTR of SARS-CoV-2 #MMPMID33928512
  • Vogele J; Ferner JP; Altincekic N; Bains JK; Ceylan B; Furtig B; Grun JT; Hengesbach M; Hohmann KF; Hymon D; Knezic B; Lohr F; Peter SA; Pyper D; Qureshi NS; Richter C; Schlundt A; Schwalbe H; Stirnal E; Sudakov A; Wacker A; Weigand JE; Wirmer-Bartoschek J; Wohnert J; Duchardt-Ferner E
  • Biomol NMR Assign 2021[Oct]; 15 (2): 335-340 PMID33928512show ga
  • The SARS-CoV-2 virus is the cause of the respiratory disease COVID-19. As of today, therapeutic interventions in severe COVID-19 cases are still not available as no effective therapeutics have been developed so far. Despite the ongoing development of a number of effective vaccines, therapeutics to fight the disease once it has been contracted will still be required. Promising targets for the development of antiviral agents against SARS-CoV-2 can be found in the viral RNA genome. The 5'- and 3'-genomic ends of the 30 kb SCoV-2 genome are highly conserved among Betacoronaviruses and contain structured RNA elements involved in the translation and replication of the viral genome. The 40 nucleotides (nt) long highly conserved stem-loop 4 (5_SL4) is located within the 5'-untranslated region (5'-UTR) important for viral replication. 5_SL4 features an extended stem structure disrupted by several pyrimidine mismatches and is capped by a pentaloop. Here, we report extensive (1)H, (13)C, (15)N and (31)P resonance assignments of 5_SL4 as the basis for in-depth structural and ligand screening studies by solution NMR spectroscopy.
  • |*5' Untranslated Regions[MESH]
  • |*Nuclear Magnetic Resonance, Biomolecular[MESH]
  • |Inverted Repeat Sequences/genetics[MESH]


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