1H, 13C and 15N assignment of stem-loop SL1 from the 5'-UTR of SARS-CoV-2

Author:

Richter Christian,Hohmann Katharina F.,Toews Sabrina,Mathieu Daniel,Altincekic Nadide,Bains Jasleen Kaur,Binas Oliver,Ceylan Betül,Duchardt-Ferner Elke,Ferner Jan,Fürtig Boris,Grün J. Tassilo,Hengesbach Martin,Hymon Daniel,Jonker Hendrik R. A.,Knezic Bozana,Korn Sophie M.,Landgraf Tom,Löhr Frank,Peter Stephen A.,Pyper Dennis J.,Qureshi Nusrat S.,Schlundt Andreas,Schnieders Robbin,Stirnal Elke,Sudakov Alexey,Vögele Jennifer,Weigand Julia E.,Wirmer-Bartoschek Julia,Witt Kerstin,Wöhnert Jens,Schwalbe HaraldORCID,Wacker Anna

Abstract

AbstractThe stem-loop (SL1) is the 5'-terminal structural element within the single-stranded SARS-CoV-2 RNA genome. It is formed by nucleotides 7–33 and consists of two short helical segments interrupted by an asymmetric internal loop. This architecture is conserved among Betacoronaviruses. SL1 is present in genomic SARS-CoV-2 RNA as well as in all subgenomic mRNA species produced by the virus during replication, thus representing a ubiquitous cis-regulatory RNA with potential functions at all stages of the viral life cycle. We present here the 1H, 13C and 15N chemical shift assignment of the 29 nucleotides-RNA construct 5_SL1, which denotes the native 27mer SL1 stabilized by an additional terminal G-C base-pair.

Funder

hessisches ministerium für wissenschaft und kunst

deutsche forschungsgemeinschaft

goethe-universität frankfurt am main

Johann Wolfgang Goethe-Universität, Frankfurt am Main

Publisher

Springer Science and Business Media LLC

Subject

Biochemistry,Structural Biology

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