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植物抗菌肽在环境胁迫下的作用途径:从农场到病床。

The Roadmap of Plant Antimicrobial Peptides Under Environmental Stress: From Farm to Bedside.

机构信息

Student Research Committee, Shiraz University of Medical Sciences, Shiraz, Iran.

Department of Phytopharmaceuticals, School of Pharmacy, Shiraz University of Medical Sciences, Shiraz, Iran.

出版信息

Probiotics Antimicrob Proteins. 2024 Dec;16(6):2269-2304. doi: 10.1007/s12602-024-10354-9. Epub 2024 Sep 3.

Abstract

Antimicrobial peptides (AMPs) are the most favorable alternatives in overcoming multidrug resistance, alone or synergistically with conventional antibiotics. Plant-derived AMPs, as cysteine-rich peptides, widely compensate the pharmacokinetic drawbacks of peptide therapeutics. Compared to the putative genes encrypted in the genome, AMPs that are produced under stress are active forms with the ability to combat resistant microbial species. Within this study, plant-derived AMPs, namely, defensins, nodule-specific cysteine-rich peptides, snakins, lipid transfer proteins, hevein-like proteins, α-hairpinins, and aracins, expressed under biotic and abiotic stresses, are classified. We could observe that while α-hairpinins and snakins display a helix-turn-helix structure, conserved motif patterns such as β1αβ2β3 and β1β2β3 exist in plant defensins and hevein-like proteins, respectively. According to the co-expression data, several plant AMPs are expressed together to trigger synergistic effects with membrane disruption mechanisms such as toroidal pore, barrel-stave, and carpet models. The application of AMPs as an eco-friendly strategy in maintaining agricultural productivity through the development of transgenes and bio-pesticides is discussed. These AMPs can be consumed in packaging material, wound-dressing products, coating catheters, implants, and allergology. AMPs with cell-penetrating properties are verified for the clearance of intracellular pathogens. Finally, the dominant pharmacological activities of bioactive peptides derived from the gastrointestinal digestion of plant AMPs, namely, inhibitors of renin and angiotensin-converting enzymes, dipeptidyl peptidase IV and α-glucosidase inhibitors, antioxidants, anti-inflammatory, immunomodulating, and hypolipidemic peptides, are analyzed. Conclusively, as phytopathogens and human pathogens can be affected by plant-derived AMPs, they provide a bright perspective in agriculture, breeding, food, cosmetics, and pharmaceutical industries, translated as farm to bedside.

摘要

抗菌肽 (AMPs) 是克服多药耐药性的最理想选择,无论是单独使用还是与传统抗生素协同使用。植物来源的 AMPs 作为富含半胱氨酸的肽,广泛弥补了肽治疗剂的药代动力学缺陷。与基因组中编码的假定基因相比,在应激下产生的 AMP 是具有抵抗微生物物种能力的活性形式。在本研究中,根据生物和非生物胁迫下表达的情况,对植物来源的 AMPs 进行了分类,包括防御素、结节特异性富含半胱氨酸的肽、蛇毒素、脂质转移蛋白、海啡肽样蛋白、α-发夹素和 ara-cins。我们可以观察到,α-发夹素和蛇毒素显示出螺旋-转角-螺旋结构,而在植物防御素和海啡肽样蛋白中分别存在保守的基序模式,如β1αβ2β3 和 β1β2β3。根据共表达数据,几种植物 AMP 一起表达,通过环孔、桶状和地毯模型等膜破坏机制触发协同作用。AMP 作为一种生态友好型策略的应用,通过转基因为农业生产力提供了支持,并开发了生物农药。这些 AMP 可以用于包装材料、伤口敷料产品、涂层导管、植入物和过敏学。具有细胞穿透特性的 AMP 已被验证可用于清除细胞内病原体。最后,分析了来源于植物 AMP 胃肠道消化的生物活性肽的主要药理活性,包括肾素和血管紧张素转换酶抑制剂、二肽基肽酶 IV 和α-葡萄糖苷酶抑制剂、抗氧化剂、抗炎、免疫调节和降血脂肽。总之,由于植物病原体和人类病原体都可以受到植物来源的 AMP 的影响,它们为农业、养殖、食品、化妆品和制药行业提供了一个光明的前景,从农场到床边都可以受益。

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