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对严重急性呼吸综合征冠状病毒2核衣壳蛋白C端结构域RNA结合抑制剂的结构洞察

Structural insights into the RNA binding inhibitors of the C-terminal domain of the SARS-CoV-2 nucleocapsid.

作者信息

Dhaka Preeti, Mahto Jai Krishna, Singh Ankur, Kumar Pravindra, Tomar Shailly

机构信息

Department of Biosciences and Bioengineering, Indian Institute of Technology Roorkee, Roorkee, Uttarakhand 247667, India.

Department of Biosciences and Bioengineering, Indian Institute of Technology Roorkee, Roorkee, Uttarakhand 247667, India.

出版信息

J Struct Biol. 2025 Jun;217(2):108197. doi: 10.1016/j.jsb.2025.108197. Epub 2025 Mar 18.

Abstract

The SARS-CoV-2 nucleocapsid (N) protein is an essential structural element of the virion, playing a crucial role in enclosing the viral genome into a ribonucleoprotein (RNP) assembly, as well as viral replication and transmission. The C-terminal domain of the N-protein (N-CTD) is essential for encapsidation, contributing to the stabilization of the RNP complex. In a previous study, three inhibitors (ceftriaxone, cefuroxime, and ampicillin) were screened for their potential to disrupt the RNA packaging process by targeting the N-protein. However, the binding efficacy, mechanism of RNA binding inhibition, and molecular insights of binding with N-CTD remain unclear. In this study, we evaluated the binding efficacy of these inhibitors using isothermal titration calorimetry (ITC), revealing the affinity of ceftriaxone (18 ± 1.3 μM), cefuroxime (55 ± 4.2 μM), and ampicillin (28 ± 1.2 μM) with the N-CTD. Further inhibition assay and fluorescence polarisation assay demonstrated RNA binding inhibition, with IC ranging from ∼ 12 to 18 μM and K values between 24 μM to 32 μM for the inhibitors, respectively. Additionally, we also determined the inhibitor-bound complex crystal structures of N-CTD-Ceftriaxone (2.0 Å) and N-CTD-Ampicillin (2.2 Å), along with the structure of apo N-CTD (1.4 Å). These crystal structures revealed previously unobserved interaction sites involving residues K261, K266, R293, Q294, and W301 at the oligomerization interface and the predicted RNA-binding region of N-CTD. These findings provide valuable molecular insights into the inhibition of N-CTD, highlighting its potential as an underexplored but promising target for the development of novel antiviral agents against coronaviruses.

摘要

严重急性呼吸综合征冠状病毒2(SARS-CoV-2)核衣壳(N)蛋白是病毒粒子的重要结构元件,在将病毒基因组包裹成核糖核蛋白(RNP)聚集体以及病毒复制和传播过程中发挥着关键作用。N蛋白的C端结构域(N-CTD)对于衣壳化至关重要,有助于RNP复合物的稳定。在先前的一项研究中,筛选了三种抑制剂(头孢曲松、头孢呋辛和氨苄西林),以评估它们通过靶向N蛋白来破坏RNA包装过程的潜力。然而,这些抑制剂的结合效力、RNA结合抑制机制以及与N-CTD结合的分子见解仍不清楚。在本研究中,我们使用等温滴定量热法(ITC)评估了这些抑制剂的结合效力,揭示了头孢曲松(18±1.3μM)、头孢呋辛(55±   4.2μM)和氨苄西林(28±1.2μM)与N-CTD的亲和力。进一步的抑制试验和荧光偏振试验证明了RNA结合抑制,抑制剂的IC范围约为12至18μM,K值在24μM至32μM之间。此外,我们还确定了N-CTD-头孢曲松(2.0 Å)和N-CTD-氨苄西林(2.2 Å)的抑制剂结合复合物晶体结构,以及无配体N-CTD(1.4 Å)的结构。这些晶体结构揭示了在寡聚化界面和N-CTD预测的RNA结合区域涉及残基K261、K266、R293、Q294和W301的先前未观察到 的相互作用位点。这些发现为N-CTD抑制提供了有价值的分子见解,突出了其作为开发新型抗冠状病毒抗病毒药物的一个未充分探索但有前景的靶点的潜力。

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