Department of Molecular Sciences, Swedish University of Agricultural Sciences, Uppsala, Sweden.
Department of Microbiology, University of Alabama at Birmingham, Birmingham, AL, United States of America.
PLoS One. 2021 Dec 7;16(12):e0251834. doi: 10.1371/journal.pone.0251834. eCollection 2021.
Structural characterization of the SARS-CoV-2 full length nsp1 protein will be an essential tool for developing new target-directed antiviral drugs against SARS-CoV-2 and for further understanding of intra- and intermolecular interactions of this protein. As a first step in the NMR studies of the protein, we report the 1H, 13C and 15N resonance backbone assignment as well as the Cβ of the apo form of the full-lengthSARS-CoV-2 nsp1 including the folded domain together with the flaking N- and C- terminal intrinsically disordered fragments. The 19.8 kD protein was characterized by high-resolution NMR. Validation of assignment have been done by using two different mutants, H81P and K129E/D48E as well as by amino acid specific experiments. According to the obtained assignment, the secondary structure of the folded domain in solution was almost identical to its previously published X-ray structure as well as another published secondary structure obtained by NMR, but some discrepancies have been detected. In the solution SARS-CoV-2 nsp1 exhibited disordered, flexible N- and C-termini with different dynamic characteristics. The short peptide in the beginning of the disordered C-terminal domain adopted two different conformations distinguishable on the NMR time scale. We propose that the disordered and folded nsp1 domains are not fully independent units but are rather involved in intramolecular interactions. Studies of the structure and dynamics of the SARS-CoV-2 mutant in solution are on-going and will provide important insights into the molecular mechanisms underlying these interactions.
对 SARS-CoV-2 全长 nsp1 蛋白进行结构特征分析,将成为开发针对 SARS-CoV-2 的新型靶向抗病毒药物的重要工具,并进一步了解该蛋白的分子内和分子间相互作用。作为该蛋白 NMR 研究的第一步,我们报告了 apo 形式的全长 SARS-CoV-2 nsp1 的 1H、13C 和 15N 共振骨架分配,以及包括折叠结构域在内的全长 SARS-CoV-2 nsp1 的 Cβ,以及剥落的 N 和 C 端固有无序片段。该 19.8 kD 蛋白通过高分辨率 NMR 进行了表征。通过使用两种不同的突变体 H81P 和 K129E/D48E 以及氨基酸特异性实验,验证了分配的正确性。根据获得的分配结果,折叠结构域在溶液中的二级结构几乎与其先前公布的 X 射线结构以及另一个通过 NMR 获得的公布的二级结构相同,但也检测到了一些差异。在溶液中,SARS-CoV-2 nsp1 表现出无序、灵活的 N 和 C 末端,具有不同的动态特性。无序 C 末端结构域起始处的短肽在 NMR 时间尺度上可区分出两种不同的构象。我们提出,无序和折叠的 nsp1 结构域不是完全独立的单元,而是涉及分子内相互作用。对溶液中 SARS-CoV-2 突变体的结构和动力学的研究正在进行中,这将为这些相互作用的分子机制提供重要的见解。