Division of Science, New York University Abu Dhabi, Abu Dhabi, UAE.
Istituto Nazionale Biostrutture e Biosistemi, Roma, Italy.
PLoS One. 2024 May 17;19(5):e0303839. doi: 10.1371/journal.pone.0303839. eCollection 2024.
The interaction between SARS-CoV-2 non-structural protein Nsp9 and the nanobody 2NSP90 was investigated by NMR spectroscopy using the paramagnetic perturbation methodology PENELOP (Paramagnetic Equilibrium vs Nonequilibrium magnetization Enhancement or LOss Perturbation). The Nsp9 monomer is an essential component of the replication and transcription complex (RTC) that reproduces the viral gRNA for subsequent propagation. Therefore preventing Nsp9 recruitment in RTC would represent an efficient antiviral strategy that could be applied to different coronaviruses, given the Nsp9 relative invariance. The NMR results were consistent with a previous characterization suggesting a 4:4 Nsp9-to-nanobody stoichiometry with the occurrence of two epitope pairs on each of the Nsp9 units that establish the inter-dimer contacts of Nsp9 tetramer. The oligomerization state of Nsp9 was also analyzed by molecular dynamics simulations and both dimers and tetramers resulted plausible. A different distribution of the mapped epitopes on the tetramer surface with respect to the former 4:4 complex could also be possible, as well as different stoichiometries of the Nsp9-nanobody assemblies such as the 2:2 stoichiometry suggested by the recent crystal structure of the Nsp9 complex with 2NSP23 (PDB ID: 8dqu), a nanobody exhibiting essentially the same affinity as 2NSP90. The experimental NMR evidence, however, ruled out the occurrence in liquid state of the relevant Nsp9 conformational change observed in the same crystal structure.
使用 NMR 光谱学中的顺磁微扰方法 PENELOP(顺磁平衡与非平衡磁化增强或 LOss 微扰)研究了 SARS-CoV-2 非结构蛋白 Nsp9 与纳米抗体 2NSP90 之间的相互作用。Nsp9 单体是复制和转录复合物(RTC)的重要组成部分,它复制病毒 gRNA 以进行后续的繁殖。因此,阻止 Nsp9 在 RTC 中的募集将代表一种有效的抗病毒策略,鉴于 Nsp9 的相对不变性,该策略可应用于不同的冠状病毒。NMR 结果与之前的表征一致,表明 Nsp9 与纳米抗体的比例为 4:4,每个 Nsp9 单元上发生两对表位,从而建立了 Nsp9 四聚体的二聚体接触。Nsp9 的寡聚状态也通过分子动力学模拟进行了分析,结果表明二聚体和四聚体都是合理的。与以前的 4:4 复合物相比,Nsp9 四聚体表面上映射表位的分布也可能不同,Nsp9-纳米抗体组装的化学计量也可能不同,如最近 Nsp9 与 2NSP23(PDB ID:8dqu)的晶体结构所表明的 2:2 化学计量,2NSP23 是一种纳米抗体,其亲和力与 2NSP90 基本相同。然而,实验性 NMR 证据排除了在同一晶体结构中观察到的相关 Nsp9 构象变化在液相中发生的可能性。