Laboratório de Fisiologia e Bioquímica de Microrganismos, Centro de Biociências e Biotecnologia, Universidade Estadual do Norte Fluminense Darcy Ribeiro, Campos dos Goytacazes, RJ, 28013-602, Brazil.
Laboratório de Biologia do Reconhecer, Centro de Biociências e Biotecnologia, Universidade Estadual do Norte Fluminense Darcy Ribeiro, Campos dos Goytacazes, RJ, 28013-602, Brazil.
Probiotics Antimicrob Proteins. 2020 Sep;12(3):1253-1265. doi: 10.1007/s12602-020-09647-6.
Scientific advances have not been enough to combat the growing resistance to antimicrobial medicines. Antimicrobial peptides (AMPs) are effector molecules of the innate immune defense system in plants and could provide an important source of new antimicrobial drugs. The aim of this work was to extract, purify, characterize, and evaluate the antifungal activities present in fractions obtained from Capsicum annum fruits through reversed-phase chromatography. The fractions named F2 and F3 presented the highest inhibitory activity against Candida and Mycobacterium tuberculosis species. In addition, we identified two sequences of AMPs in the F2 and F3 fractions through mass spectrometry that showed similarity to an already well-characterized family of plant defensins. A plasma membrane permeabilization assay demonstrated that the peptides present in F2, F3, and F4 fractions induced changes in the membrane of some yeast strains, culminating in permeabilization. The production of reactive oxygen species was induced by the fractions in some yeast strains. Fractions F2, F3, and F4 also did not show toxicity in macrophage or monocyte cultures. In conclusion, the obtained data demonstrate that the AMPs, especially those present in the fractions F2 and F3, are promising antimicrobial agents that may be useful to enhance the development of new therapeutic agents for the treatment of diseases.
科学进步尚未足以对抗日益增加的对抗微生物药物的耐药性。抗菌肽 (AMPs) 是植物先天免疫防御系统的效应分子,可为新型抗菌药物提供重要来源。本工作旨在通过反相色谱从辣椒果实中提取、纯化、表征并评估存在于各馏分中的抗真菌活性。命名为 F2 和 F3 的馏分对念珠菌和结核分枝杆菌具有最高的抑制活性。此外,我们通过质谱鉴定了 F2 和 F3 馏分中的两个 AMP 序列,它们与已充分表征的植物防御素家族具有相似性。质膜通透性测定表明,F2、F3 和 F4 馏分中的肽诱导一些酵母菌株的膜发生变化,最终导致通透性。这些馏分在一些酵母菌株中诱导了活性氧的产生。F2、F3 和 F4 馏分在巨噬细胞或单核细胞培养物中也没有表现出毒性。总之,获得的数据表明,AMP,尤其是存在于 F2 和 F3 馏分中的 AMP,是有前途的抗菌剂,可能有助于增强新型治疗剂的开发,以治疗疾病。