Pellissier Léonie, Leoni Sara, Marcourt Laurence, Ferreira Queiroz Emerson, Lecoultre Nicole, Quiros-Guerrero Luis-Manuel, Barthélémy Morgane, Eparvier Véronique, Chave Jérôme, Stien Didier, Gindro Katia, Perron Karl, Wolfender Jean-Luc
School of Pharmaceutical Sciences, University of Geneva, CMU-Rue Michel-Servet 1, CH-1211 Geneva 4, Switzerland.
Institute of Pharmaceutical Sciences of Western Switzerland, University of Geneva, CMU-Rue Michel Servet 1, CH-1211 Geneva 4, Switzerland.
Microorganisms. 2021 Aug 25;9(9):1807. doi: 10.3390/microorganisms9091807.
The opportunistic pathogen is one of the "critical priority pathogens" due to its multidrug resistance to a wide range of antibiotics. Its ability to invade and damage host tissues is due to the use of quorum sensing (QS) to collectively produce a plethora of virulence factors. Inhibition of QS is an attractive strategy for new antimicrobial agents because it disrupts the initial events of infection without killing the pathogen. Highly diverse microorganisms as endophytes represent an under-explored source of bioactive natural products, offering opportunities for the discovery of novel QS inhibitors (QSI). In the present work, the objective was to explore selective QSIs within a unique collection of fungal endophytes isolated from the tropical palm . The fungi were cultured, extracted, and screened for their antibacterial and specific anti-QS activities against . The endophytic strain was prioritized for scaled-up fractionation for its selective activity, leading to the isolation of eight compounds in a single step. Among them, two pyran-derivatives were found to be responsible for the QSI activity, with an effect on some QS-regulated virulence factors. Additional non-targeted metabolomic studies on documented their effects on the production of various virulence-related metabolites.
由于对多种抗生素具有多重耐药性,这种机会致病菌是“关键优先病原体”之一。它侵袭和损伤宿主组织的能力归因于利用群体感应(QS)来共同产生大量毒力因子。抑制群体感应是新型抗菌剂的一种有吸引力的策略,因为它在不杀死病原体的情况下破坏感染的初始事件。作为内生菌的高度多样化的微生物代表了一种未被充分探索的生物活性天然产物来源,为发现新型群体感应抑制剂(QSI)提供了机会。在本研究中,目标是在从热带棕榈中分离出的独特真菌内生菌集合中探索选择性QSI。对这些真菌进行培养、提取,并针对其对……的抗菌和特定抗群体感应活性进行筛选。内生菌株因其选择性活性而被优先进行放大分级分离,从而在一步中分离出八种化合物。其中,两种吡喃衍生物被发现具有群体感应抑制活性,对一些受群体感应调节的毒力因子有影响。对……进行的额外非靶向代谢组学研究记录了它们对各种与毒力相关的代谢产物产生的影响。