Antiviral peptides inhibiting the main protease of SARS-CoV-2 investigated by computational screening and in vitro protease assay

IF 1.8 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
James Stewart, Jakaria Shawon, Md Ackas Ali, Blaise Williams, A. D. A. Shahinuzzaman, Sharmin Akther Rupa, Taha Al-Adhami, Ruoqing Jia, Cole Bourque, Ryan Faddis, Kaylee Stone, Md Abu Sufian, Rajib Islam, Andrew C. McShan, Khondaker Miraz Rahman, Mohammad A. Halim
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引用次数: 0

Abstract

The main protease (Mpro) of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) plays an important role in viral replication and transcription and received great attention as a vital target for drug/peptide development. Therapeutic agents such as small-molecule drugs or peptides that interact with the Cys–His present in the catalytic site of Mpro are an efficient way to inhibit the protease. Although several emergency-approved vaccines showed good efficacy and drastically dropped the infection rate, evolving variants are still infecting and killing millions of people globally. While a small-molecule drug (Paxlovid) received emergency approval, small-molecule drugs have low target specificity and higher toxicity. Besides small-molecule drugs, peptide therapeutics are thus gaining increasing popularity as they are easy to synthesize and highly selective and have limited side effects. In this study, we investigated the therapeutic value of 67 peptides targeting Mpro using molecular docking. Subsequently, molecular dynamics (MD) simulations were implemented on eight protein–peptide complexes to obtain molecular-level information on the interaction between these peptides and the Mpro active site, which revealed that temporin L, indolicidin, and lymphocytic choriomeningitis virus (LCMV) GP1 are the best candidates in terms of stability, interaction, and structural compactness. These peptides were synthesized using the solid-phase peptide synthesis protocol, purified by reversed-phase high-performance liquid chromatography (RP-HPLC), and authenticated by mass spectrometry (MS). The in vitro fluorometric Mpro activity assay was used to validate the computational results, where temporin L and indolicidin were observed to be very active against SARS-CoV-2 Mpro with IC50 values of 38.80 and 87.23 μM, respectively. A liquid chromatography–MS (LC–MS) assay was developed, and the IC50 value of temporin L was measured at 23.8 μM. The solution-state nuclear magnetic resonance (NMR) structure of temporin L was determined in the absence of sodium dodecyl sulfate (SDS) micelles and was compared to previous temporin structures. This combined investigation provides critical insights and assists us to further develop peptide inhibitors of SARS-CoV-2 Mpro through structural guided investigation.

Abstract Image

通过计算筛选和体外蛋白酶试验研究抑制SARS-CoV-2主要蛋白酶的抗病毒肽。
严重急性呼吸综合征冠状病毒2 (SARS-CoV-2)的主要蛋白酶(Mpro)在病毒复制和转录中起着重要作用,作为药物/肽开发的重要靶点受到了广泛关注。治疗药物如小分子药物或多肽与存在于Mpro催化位点的Cys-His相互作用是抑制蛋白酶的有效方法。尽管一些紧急批准的疫苗显示出良好的功效,并大大降低了感染率,但不断演变的变种仍在感染和杀死全球数百万人。虽然一种小分子药物(Paxlovid)获得了紧急批准,但小分子药物具有低靶点特异性和较高的毒性。除了小分子药物外,多肽疗法也因其易于合成、选择性高、副作用小等优点而越来越受欢迎。在本研究中,我们利用分子对接的方法研究了67种靶向Mpro的肽的治疗价值。随后,对8个蛋白-肽复合物进行了分子动力学(MD)模拟,以获得这些肽与Mpro活性位点之间相互作用的分子水平信息,结果表明,从稳定性、相互作用和结构紧密性方面来看,temporin L、indolicidin和淋巴细胞性脉络丛脑膜炎病毒(LCMV) GP1是最好的候选者。这些肽采用固相肽合成方案合成,反相高效液相色谱(RP-HPLC)纯化,质谱(MS)鉴定。采用体外荧光法对计算结果进行验证,结果表明,天门冬苷L和吲哚啶对SARS-CoV-2 Mpro具有很强的活性,IC50值分别为38.80 μM和87.23 μM。建立了液相色谱-质谱(LC-MS)分析方法,在23.8 μM处测定了颞叶苷L的IC50值。在没有十二烷基硫酸钠(SDS)胶束的情况下,测定了颞叶蛋白L的溶液态核磁共振(NMR)结构,并与之前的颞叶蛋白结构进行了比较。这项联合研究提供了重要的见解,并帮助我们通过结构引导研究进一步开发SARS-CoV-2 Mpro的肽抑制剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Peptide Science
Journal of Peptide Science 生物-分析化学
CiteScore
3.40
自引率
4.80%
发文量
83
审稿时长
1.7 months
期刊介绍: The official Journal of the European Peptide Society EPS The Journal of Peptide Science is a cooperative venture of John Wiley & Sons, Ltd and the European Peptide Society, undertaken for the advancement of international peptide science by the publication of original research results and reviews. The Journal of Peptide Science publishes three types of articles: Research Articles, Rapid Communications and Reviews. The scope of the Journal embraces the whole range of peptide chemistry and biology: the isolation, characterisation, synthesis properties (chemical, physical, conformational, pharmacological, endocrine and immunological) and applications of natural peptides; studies of their analogues, including peptidomimetics; peptide antibiotics and other peptide-derived complex natural products; peptide and peptide-related drug design and development; peptide materials and nanomaterials science; combinatorial peptide research; the chemical synthesis of proteins; and methodological advances in all these areas. The spectrum of interests is well illustrated by the published proceedings of the regular international Symposia of the European, American, Japanese, Australian, Chinese and Indian Peptide Societies.
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