In Silico Structural and Functional Characterization of the Thaumatin‐Like Gene Family in Phaseolus lunatus Reveals the Potential for Microbial and Antiviral Activity

IF 1.5 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Peptide Science Pub Date : 2024-07-18 DOI:10.1002/pep2.24373
Dalton Ferreira Matos, Maria Cidinaria Silva Alves, Ruana Carolina Cabral da Silva, Hortência E. P. Santana, Denise Santos Ruzene, Marcus Vinicius de Aragão Batista, Daniel P. Silva
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Abstract

Thaumatin‐like proteins (TLPs) are part of the pathogenesis‐related (PR) proteins that are important in host plant defense. TLPs have multiple defense functions against pathogens (bacteria, viruses, and fungi) and are involved in other biological processes of several living organisms. However, the biological role of TLPs must be elucidated for other species, such as Phaseolus lunatus, popularly known as lima bean. In this study, we propose to investigate the biological activity of TLPs in P. lunatus, which can help develop a detailed functional characterization of the TLP gene in other crop cultures. As a result, a total of 31 PlTPLs genes and 16 highly conserved cysteine residues for each family member were identified in the lima bean genome. Regarding phylogenetic analysis, 128 TLPs from different plant species, including P. lunatus, were used, and the phenetic tree revealed that the TLPs could be divided into six groups. The leading group was Group 4, containing 34 TLPs; the smallest was Group 7, containing only a single TLP. The analysis of antimicrobial and antiviral activity revealed that 27 PlTLPs have antimicrobial activity and 7 PlTLPs have potential antiviral activity. For chromosomal distribution of the PlTLPs, 8 of 11 chromosomes presented at least one PlTLs on one of the chromosomes. Finally, molecular modeling was carried out between two TLPs (PlTLP5 and PlTLP14), which presented antimicrobial and antiviral activity and did not have allergenic activity. The results showed that the two candidates presented ≥90% of their residues in the favorable regions and ∼10% in the permitted regions, demonstrating that the two PlTLPs are considered promising targets for biotechnological applications, especially those related to the genetic improvement of agricultural crops and the development of antimicrobial agents.
新月相思豆中 Thaumatin-Like 基因家族的硅学结构和功能特性分析揭示了微生物和抗病毒活性的潜力
Thaumatin样蛋白(TLPs)是病原相关蛋白(PR)的一部分,在寄主植物防御中具有重要作用。TLPs 对病原体(细菌、病毒和真菌)具有多种防御功能,并参与多种生物体的其他生物过程。然而,TLPs 在其他物种中的生物学作用还有待于阐明,例如人们熟知的利马豆(Phaseolus lunatus)。在本研究中,我们拟对月见草中 TLPs 的生物活性进行研究,这有助于在其他作物栽培中对 TLP 基因进行详细的功能表征。结果,在利马豆基因组中发现了 31 个 PlTPLs 基因和每个家族成员的 16 个高度保守的半胱氨酸残基。在系统发育分析方面,我们使用了来自不同植物物种(包括利马豆)的 128 个 TLPs,表型树显示这些 TLPs 可分为六组。表型树显示,TLPs 可分为六组,最主要的一组是第 4 组,包含 34 个 TLPs;最小的一组是第 7 组,只包含一个 TLPs。抗菌和抗病毒活性分析表明,27 个 PlTLPs 具有抗菌活性,7 个 PlTLPs 具有潜在的抗病毒活性。在 PlTLPs 的染色体分布方面,11 条染色体中有 8 条染色体上至少有一个 PlTLs。最后,对两种具有抗菌和抗病毒活性且不具有致敏活性的 TLP(PlTLP5 和 PlTLP14)进行了分子建模。结果表明,这两种候选物质的残基≥90%位于有利区域,∼10%位于允许区域,这表明这两种 PlTLPs 被认为是生物技术应用的有希望的目标,特别是与农作物遗传改良和抗菌剂开发有关的目标。
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来源期刊
Peptide Science
Peptide Science Biochemistry, Genetics and Molecular Biology-Biophysics
CiteScore
5.20
自引率
4.20%
发文量
36
期刊介绍: The aim of Peptide Science is to publish significant original research papers and up-to-date reviews covering the entire field of peptide research. Peptide Science provides a forum for papers exploring all aspects of peptide synthesis, materials, structure and bioactivity, including the use of peptides in exploring protein functions and protein-protein interactions. By incorporating both experimental and theoretical studies across the whole spectrum of peptide science, the journal serves the interdisciplinary biochemical, biomaterials, biophysical and biomedical research communities. Peptide Science is the official journal of the American Peptide Society.
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