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T-2307 导致酵母中线粒体膜电位崩溃。

T-2307 causes collapse of mitochondrial membrane potential in yeast.

机构信息

Research Laboratories, Toyama Chemical Co., Ltd., Toyama, Japan.

出版信息

Antimicrob Agents Chemother. 2012 Nov;56(11):5892-7. doi: 10.1128/AAC.05954-11. Epub 2012 Sep 4.

Abstract

T-2307, an arylamidine compound, has been previously reported to have broad-spectrum in vitro and in vivo antifungal activities against clinically significant pathogens, including Candida species, Cryptococcus neoformans, and Aspergillus species, and is now undergoing clinical trials. Here we investigated the mechanism of action of T-2307 using yeast cells and mitochondria isolated from yeast and rat liver. Nonfermentative growth of Candida albicans and Saccharomyces cerevisiae in glycerol medium, in which yeasts relied on mitochondrial respiratory function, was inhibited at 0.001 to 0.002 μg/ml (0.002 to 0.004 μM) of T-2307. However, fermentative growth in dextrose medium was not inhibited by T-2307. Microscopic examination using Mitotracker fluorescent dye, a cell-permeant mitochondrion-specific probe, demonstrated that T-2307 impaired the mitochondrial function of C. albicans and S. cerevisiae at concentrations near the MIC in glycerol medium. T-2307 collapsed the mitochondrial membrane potential in mitochondria isolated from S. cerevisiae at 20 μM. On the other hand, in isolated rat liver mitochondria, T-2307 did not have any effect on the mitochondrial membrane potential at 10 mM. Moreover, T-2307 had little inhibitory and stimulatory effect on mitochondrial respiration in rat liver mitochondria. In conclusion, T-2307 selectively disrupted yeast mitochondrial function, and it was also demonstrated that the fungal mitochondrion is an attractive antifungal target.

摘要

T-2307 是一种芳脒类化合物,此前有报道称其对临床上重要的病原体具有广谱的体外和体内抗真菌活性,包括念珠菌属、新生隐球菌和曲霉属,目前正在进行临床试验。在这里,我们使用酵母细胞和从酵母和大鼠肝脏中分离的线粒体研究了 T-2307 的作用机制。在酵母依赖于线粒体呼吸功能的甘油培养基中,白色念珠菌和酿酒酵母的非发酵生长在 0.001 至 0.002 μg/ml(0.002 至 0.004 μM)的 T-2307 浓度下受到抑制。然而,T-2307 并未抑制葡萄糖培养基中的发酵生长。使用 Mitotracker 荧光染料(一种细胞通透性的线粒体特异性探针)进行的显微镜检查表明,T-2307 在接近甘油培养基中 MIC 的浓度下损害了白色念珠菌和酿酒酵母的线粒体功能。T-2307 在 20 μM 时使从酿酒酵母中分离的线粒体膜电位崩溃。另一方面,在分离的大鼠肝线粒体中,T-2307 在 10 mM 时对线粒体膜电位没有任何影响。此外,T-2307 对大鼠肝线粒体的线粒体呼吸几乎没有抑制和刺激作用。总之,T-2307 选择性地破坏了酵母线粒体功能,并且还证明真菌线粒体是一个有吸引力的抗真菌靶标。

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