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ACS Phys Chem Au. 2024 Jul 5;4(5):464-475. doi: 10.1021/acsphyschemau.4c00006. eCollection 2024 Sep 25.
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Accessing diverse bicyclic peptide conformations using 1,2,3-TBMB as a linker.使用 1,2,3-TBMB 作为连接子来获取多样的双环肽构象。
Org Biomol Chem. 2024 Jul 31;22(30):6095-6102. doi: 10.1039/d4ob00901k.
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Antiviral peptides inhibiting the main protease of SARS-CoV-2 investigated by computational screening and in vitro protease assay.通过计算筛选和体外蛋白酶测定研究抗 SARS-CoV-2 主蛋白酶的抗病毒肽。
J Pept Sci. 2024 Apr;30(4):e3553. doi: 10.1002/psc.3553. Epub 2023 Nov 29.
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Cyclic Peptide Linker Design and Optimization by Molecular Dynamics Simulations.通过分子动力学模拟进行环肽连接体的设计与优化
J Chem Inf Model. 2023 Nov 13;63(21):6863-6876. doi: 10.1021/acs.jcim.3c01359. Epub 2023 Oct 30.
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Therapeutic Potential of Antiviral Peptides against the NS2B/NS3 Protease of Zika Virus.抗病毒肽对寨卡病毒NS2B/NS3蛋白酶的治疗潜力
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Strategic Approaches to Improvise Peptide Drugs as Next Generation Therapeutics.将肽类药物改进为下一代治疗药物的策略方法。
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Bench-to-bedside: Innovation of small molecule anti-SARS-CoV-2 drugs in China.从实验室到病床:中国小分子抗 SARS-CoV-2 药物的创新。
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10
Association of COVID-19 with Comorbidities: An Update.新型冠状病毒肺炎与合并症的关联:最新进展
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靶向严重急性呼吸综合征冠状病毒2主蛋白酶的双环 temporin L 肽抑制剂:设计、合成、抑制效率及分子动力学见解

Bicyclic temporin L peptide inhibitors targeting the SARS-CoV-2 main protease: design, synthesis, inhibition efficiency and molecular dynamics insights.

作者信息

Sharif Md Taimuzzaman, Farque Md Omor, Rahaman Md Habibur, Hossen Md Arafat, Hossain Mohammed Akhter, Halim Mohammad A

机构信息

Department of Chemistry and Biochemistry, Kennesaw State University Kennesaw GA 30144 USA

Division of Infectious Diseases and Division of Computer-Aided Drug Design, The Red-Green Research Center, BICCB Tejgaon 1215 Dhaka Bangladesh.

出版信息

RSC Med Chem. 2025 Aug 12. doi: 10.1039/d5md00528k.

DOI:10.1039/d5md00528k
PMID:40933213
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC12419469/
Abstract

Bicyclic peptides have emerged as promising inhibitors due to their high binding affinity and selectivity for target receptors. While peptide inhibitors are highly target-specific and exhibit strong protein-binding capabilities, their potential is often limited by challenges such as proteolytic instability and flexible secondary structures, which can reduce their efficacy and bioavailability. This study focuses on designing and synthesizing bicyclic peptides and their molecular dynamics insights using scaffolds like 1,3,5-tris(bromomethyl)benzene (TBMB) and 1,3,5-triacryloylhexahydro-1,3,5-triazine (TATA) to enhance their stability and efficacy. The inhibitory activity of these peptides was assessed by targeting the main protease (Mpro), a key enzyme in viral replication of SARS-CoV-2. Mass spectrometry confirmed the purity of these peptides, and their inhibitory activity was evaluated using fluorescence resonance energy transfer (FRET) and selected ion monitoring (SIM)-based LC-MS assays. Computational modeling and molecular dynamics (MD) simulations revealed the structural basis of peptide-Mpro interactions, highlighting improved conformational stability and binding mechanisms. Bicyclic peptides demonstrated superior inhibition compared to linear analogs, with constraints significantly improving peptide stability and binding properties. Our findings highlight the potential of bicyclic peptides as a robust platform for developing next-generation therapeutics with enhanced pharmacokinetic and pharmacodynamic profiles.

摘要

双环肽因其对靶受体具有高结合亲和力和选择性而成为有前景的抑制剂。虽然肽类抑制剂具有高度的靶点特异性并表现出强大的蛋白质结合能力,但其潜力往往受到诸如蛋白水解不稳定性和灵活的二级结构等挑战的限制,这些可能会降低其疗效和生物利用度。本研究聚焦于使用1,3,5-三(溴甲基)苯(TBMB)和1,3,5-三丙烯酰基六氢-1,3,5-三嗪(TATA)等支架设计和合成双环肽及其分子动力学见解,以提高其稳定性和疗效。通过靶向主要蛋白酶(Mpro)评估这些肽的抑制活性,Mpro是新冠病毒复制中的关键酶。质谱法确认了这些肽的纯度,并使用基于荧光共振能量转移(FRET)和选择离子监测(SIM)的液相色谱-质谱分析评估了它们的抑制活性。计算建模和分子动力学(MD)模拟揭示了肽与Mpro相互作用的结构基础,突出了改善的构象稳定性和结合机制。与线性类似物相比,双环肽表现出优异的抑制作用,环化显著提高了肽的稳定性和结合特性。我们的研究结果突出了双环肽作为开发具有增强药代动力学和药效学特征的下一代治疗药物的强大平台的潜力。