Department of Chemical Sciences, University of Naples Federico II, Via Cintia, Naples, 80126, Italy.
Department of Life Sciences and Systems Biology, University of Turin, Viale P.A. Mattioli 25, Turin, 10125, Italy.
Appl Microbiol Biotechnol. 2024 Jun 3;108(1):358. doi: 10.1007/s00253-024-13182-7.
Biosurfactants are in demand by the global market as natural commodities suitable for incorporation into commercial products or utilization in environmental applications. Fungi are promising producers of these molecules and have garnered interest also for their metabolic capabilities in efficiently utilizing recalcitrant and complex substrates, like hydrocarbons, plastic, etc. Within this framework, biosurfactants produced by two Fusarium solani fungal strains, isolated from plastic waste-contaminated landfill soils, were analyzed. Mycelia of these fungi were grown in the presence of 5% olive oil to drive biosurfactant production. The characterization of the emulsifying and surfactant capacity of these extracts highlighted that two different components are involved. A protein was purified and identified as a CFEM (common in fungal extracellular membrane) containing domain, revealing a good propensity to stabilize emulsions only in its aggregate form. On the other hand, an unidentified cationic smaller molecule exhibits the ability to reduce surface tension. Based on the 3D structural model of the protein, a plausible mechanism for the formation of very stable aggregates, endowed with the emulsifying ability, is proposed. KEY POINTS: • Two Fusarium solani strains are analyzed for their surfactant production. • A cationic surfactant is produced, exhibiting the ability to remarkably reduce surface tension. • An identified protein reveals a good propensity to stabilize emulsions only in its aggregate form.
生物表面活性剂作为天然商品受到全球市场的需求,适合纳入商业产品或用于环境应用。真菌是这些分子的有前途的生产者,它们的代谢能力也引起了人们的兴趣,因为它们能够有效地利用难降解和复杂的基质,如碳氢化合物、塑料等。在这个框架内,分析了两种从受塑料垃圾污染的垃圾填埋场土壤中分离出来的尖孢镰刀菌真菌菌株产生的生物表面活性剂。在存在 5%橄榄油的情况下培养这些真菌的菌丝体,以促进生物表面活性剂的生产。对这些提取物的乳化和表面活性剂能力的表征表明,涉及两种不同的成分。一种蛋白质被纯化并鉴定为含有 CFEM(真菌细胞外膜中常见的)结构域,表现出仅在其聚集形式下稳定乳液的良好倾向。另一方面,一种未鉴定的阳离子小分子具有降低表面张力的能力。基于该蛋白质的 3D 结构模型,提出了一种形成具有乳化能力的非常稳定聚集体的合理机制。关键点: • 分析了两种尖孢镰刀菌菌株的表面活性剂生产情况。 • 产生了一种阳离子表面活性剂,具有显著降低表面张力的能力。 • 一种已鉴定的蛋白质仅在其聚集形式下表现出稳定乳液的良好倾向。