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双芐基类化合物,一种新型抗真菌药物,通过上调白念珠菌中 DPP3 的表达来抑制形态发生转换和生物膜形成。

Bisbibenzyls, a new type of antifungal agent, inhibit morphogenesis switch and biofilm formation through upregulation of DPP3 in Candida albicans.

机构信息

School of Pharmaceutical Sciences, Shandong University, Jinan, Shandong, China.

出版信息

PLoS One. 2011;6(12):e28953. doi: 10.1371/journal.pone.0028953. Epub 2011 Dec 12.

Abstract

The yeast-to-hypha transition plays a crucial role in the pathogenesis of C. albicans. Farnesol, a quorum sensing molecule (QSM) secreted by the fungal itself, could prevent the formation of hyphae and subsequently lead to the defect of biofilm formation. The DPP3, encoding phosphatase, is a key gene in regulating farnesol synthesis. In this study, we screened 24 bisbibenzyls and 2 bibenzyls that were isolated from bryophytes or chemically synthesized by using CLSI method for antifungal effect. Seven bisbibenzyls were found to have antifungal effects with IC(80) less than 32 µg/ml, and among them, plagiochin F, isoriccardin C and BS-34 were found to inhibit the hyphae and biofilm formation of C. albicans in a dose-dependent manner. To uncover the underlying relationship between morphogenesis switch and QSM formation, we measured the farnesol production by HPLC-MS and quantified Dpp3 expression by detecting the fluorescent intensity of green fluorescent protein tagged strain using Confocal Laser Scanning microscopy and Multifunction Microplate Reader. The DPP3 transcripts were determined by real-time PCR. The data indicated that the bisbibenzyls exerted antifungal effects through stimulating the synthesis of farnesol via upregulation of Dpp3, suggesting a potential antifungal application of bisbibenzyls. In addition, our assay provides a novel, visual and convenient method to measure active compounds against morphogenesis switch.

摘要

酵母-菌丝过渡在白色念珠菌的发病机制中起着关键作用。法呢醇是真菌自身分泌的一种群体感应分子(QSM),可以阻止菌丝的形成,从而导致生物膜形成缺陷。编码磷酸酶的 DPP3 是调节法呢醇合成的关键基因。在这项研究中,我们使用 CLSI 方法筛选了 24 种从苔藓植物中分离得到的双苄基化合物和 2 种化学合成的双苄基化合物,以评估其抗真菌作用。发现 7 种双苄基化合物具有抗真菌作用,IC(80)值均小于 32µg/ml,其中,普莱乔辛 F、异卡巴林 C 和 BS-34 以剂量依赖性方式抑制白色念珠菌的菌丝和生物膜形成。为了揭示形态发生转换与 QSM 形成之间的潜在关系,我们使用 HPLC-MS 测量法呢醇的产生,并通过共聚焦激光扫描显微镜和多功能微孔板读数仪检测绿色荧光蛋白标记菌株的荧光强度来定量 Dpp3 表达。通过实时 PCR 确定 DPP3 转录本。数据表明,双苄基化合物通过上调 Dpp3 刺激法呢醇的合成发挥抗真菌作用,这表明双苄基化合物具有潜在的抗真菌应用。此外,我们的测定方法提供了一种新颖、直观和方便的方法来测量针对形态发生转换的活性化合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b8b7/3236236/a052ac326f25/pone.0028953.g001.jpg

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