Selvaraj Chandrabose, Dinesh Dhurvas Chandrasekaran, Pedone Emilia Maria, Alothaim Abdulaziz S, Vijayakumar Rajendran, Rudhra Ondippili, Singh Sanjeev Kumar
Division of Research and Innovation, Saveetha School of Engineering, SIMATS, Chennai 602105, India.
Institute of Organic Chemistry and Biochemistry AS CR, v.v.i., Flemingovo nam. 2., 16610 Prague 6, Czechia.
Brief Funct Genomics. 2023 Apr 13;22(2):227-240. doi: 10.1093/bfgp/elac046.
SARS-CoV-2 encodes eight accessory proteins, one of which, ORF8, has a poorly conserved sequence with SARS-CoV and its role in viral pathogenicity has recently been identified. ORF8 in SARS-CoV-2 has a unique functional feature that allows it to form a dimer structure linked by a disulfide bridge between Cys20 and Cys20 (S-S). This study provides structural characterization of natural mutant variants as well as the identification of potential drug candidates capable of binding directly to the interchain disulfide bridge. The lead compounds reported in this work have a tendency to settle in the dimeric interfaces by direct interaction with the disulfide bridge. These molecules may disturb the dimer formation and may have an inhibition impact on its potential functional role in host immune evasion and virulence pathogenicity. This work provides detailed insights on the sequence and structural variability through computational mutational studies, as well as potent drug candidates with the ability to interrupt the intermolecular disulfide bridge formed between Cys20 and Cys20. Furthermore, the interactions of ORF8 peptides complexed with MHC-1 is studied, and the binding mode reveals that certain ORF8 peptides bind to MHC-1 in a manner similar to other viral peptides. Overall, this study is a narrative of various computational approaches used to provide detailed structural insights into SARS-CoV-2 ORF8 interchain disulfide bond disruptors.
严重急性呼吸综合征冠状病毒2(SARS-CoV-2)编码8种辅助蛋白,其中一种蛋白ORF8与SARS-CoV的序列保守性较差,其在病毒致病性中的作用最近已被确定。SARS-CoV-2中的ORF8具有独特的功能特征,使其能够形成一种二聚体结构,该结构由半胱氨酸20(Cys20)和半胱氨酸20之间的二硫键(S-S)连接。本研究提供了天然突变变体的结构特征,以及能够直接结合链间二硫键的潜在药物候选物的鉴定。这项工作中报道的先导化合物倾向于通过与二硫键直接相互作用而沉淀在二聚体界面中。这些分子可能会干扰二聚体的形成,并可能对其在宿主免疫逃逸和毒力致病性中的潜在功能作用产生抑制影响。这项工作通过计算突变研究提供了关于序列和结构变异性的详细见解,以及具有中断半胱氨酸20和半胱氨酸20之间形成的分子间二硫键能力的有效药物候选物。此外,研究了与主要组织相容性复合体1(MHC-1)复合的ORF8肽的相互作用,结合模式表明某些ORF8肽以与其他病毒肽相似的方式与MHC-1结合。总体而言,本研究叙述了用于提供对SARS-CoV-2 ORF8链间二硫键破坏剂详细结构见解的各种计算方法。