In Silico Design and Synthesis of Antifungal Peptides Guided by Quantitative Antifungal Activity

IF 5.6 2区 化学 Q1 CHEMISTRY, MEDICINAL
Jin Zhang*, Xinhao Sun, Hongwei Zhao, Xu Zhou, Yiling Zhang, Feng Xie, Boyan Li* and Guo Guo*, 
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Abstract

Antifungal peptides (AFPs) are emerging as promising candidates for advanced antifungal therapies because of their broad-spectrum efficacy and reduced resistance development. In silico design of AFPs, however, remains challenging, due to the lack of an efficient and well-validated quantitative assessment of antifungal activity. This study introduced an AFP design approach that leverages an innovative quantitative metric, named the antifungal index (AFI), through a three-step process, i.e., segmentation, single-point mutation, and global multipoint optimization. An exhaustive search of 100 putative AFP sequences indicated that random modifications without guidance only have a 5.97–20.24% chance of enhancing antifungal activity. Analysis of the search results revealed that (1) N-terminus truncation is more effective in enhancing antifungal activity than the modifications at the C-terminus or both ends, (2) introducing the amino acids within the 10–60% sequence region that enhance aromaticity and hydrophobicity are more effective in increasing antifungal efficacy, and (3) incorporating alanine, cysteine, and phenylalanine during multiple point mutations has a synergistic effect on enhancing antifungal activity. Subsequently, 28 designed peptides were synthesized and tested against four typical fungal strains. The success rate for developing promising AFPs, with a minimal inhibitory concentration of ≤5.00 μM, was an impressive 82.14%. The predictive and design tool is accessible at https://antifungipept.chemoinfolab.com.

Abstract Image

Abstract Image

以定量抗真菌活性为指导的抗真菌肽的硅学设计与合成
抗真菌肽(AFPs)具有广谱疗效并能减少抗药性的产生,因此正在成为先进抗真菌疗法的理想候选药物。然而,由于缺乏有效且经过验证的抗真菌活性定量评估方法,AFPs 的硅学设计仍具有挑战性。本研究引入了一种 AFP 设计方法,该方法利用创新的定量指标(抗真菌指数 (AFI)),通过三步流程(即分割、单点突变和全局多点优化)进行设计。对 100 个假定的 AFP 序列进行的详尽搜索表明,未经指导的随机修饰只有 5.97-20.24% 的几率提高抗真菌活性。对搜索结果的分析表明:(1) N 端截短比 C 端或两端修饰更能提高抗真菌活性;(2) 在 10-60% 序列区域内引入能增强芳香性和疏水性的氨基酸更能提高抗真菌效力;(3) 在多点突变过程中加入丙氨酸、半胱氨酸和苯丙氨酸对提高抗真菌活性有协同作用。随后,合成了 28 种设计的多肽,并针对四种典型的真菌菌株进行了测试。在最小抑制浓度≤5.00 μM的条件下,成功开发出有前景的AFPs的比率高达82.14%,令人印象深刻。预测和设计工具可通过 https://antifungipept.chemoinfolab.com 访问。
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来源期刊
CiteScore
9.80
自引率
10.70%
发文量
529
审稿时长
1.4 months
期刊介绍: The Journal of Chemical Information and Modeling publishes papers reporting new methodology and/or important applications in the fields of chemical informatics and molecular modeling. Specific topics include the representation and computer-based searching of chemical databases, molecular modeling, computer-aided molecular design of new materials, catalysts, or ligands, development of new computational methods or efficient algorithms for chemical software, and biopharmaceutical chemistry including analyses of biological activity and other issues related to drug discovery. Astute chemists, computer scientists, and information specialists look to this monthly’s insightful research studies, programming innovations, and software reviews to keep current with advances in this integral, multidisciplinary field. As a subscriber you’ll stay abreast of database search systems, use of graph theory in chemical problems, substructure search systems, pattern recognition and clustering, analysis of chemical and physical data, molecular modeling, graphics and natural language interfaces, bibliometric and citation analysis, and synthesis design and reactions databases.
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