首页> 外文期刊>Antimicrobial agents and chemotherapy. >Site-Directed Mutagenesis of the 1,3-beta-Glucan Synthase Catalytic Subunit of Pneumocystis jirovecii and Susceptibility Assays Suggest Its Sensitivity to Caspofungin
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Site-Directed Mutagenesis of the 1,3-beta-Glucan Synthase Catalytic Subunit of Pneumocystis jirovecii and Susceptibility Assays Suggest Its Sensitivity to Caspofungin

机译:Pneumocystis jirovecii和易感测定的1,3-β-葡聚糖合成酶催化亚基的诱变诱变表明其对Caspofungin的敏感性

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The echinocandin caspofungin inhibits the catalytic subunit Gsc1 of the enzymatic complex synthesizing 1,3-beta-glucan, an essential compound of the fungal wall. Studies with rodents showed that caspofungin is effective against Pneumocystis asci. However, its efficacy against asci of Pneumocystis jirovecii, the species infecting exclusively humans, remains controversial. The aim of this study was to assess the sensitivity to caspofungin of the P. jirovecii Gsc1 subunit, as well as of those of Pneumocystis carinii and Pneumocystis murina infecting, respectively, rats and mice. In the absence of an established in vitro culture method for Pneumocystis species, we used functional complementation of the Saccharomyces cerevisiae gsc1 deletant. In the fungal pathogen Candida albicans, mutations leading to amino acid substitutions in Gsc1 confer resistance to caspofungin. We introduced the corresponding mutations into the Pneumocystis gsc1 genes using site-directed mutagenesis. In spot dilution tests, the sensitivity to caspofungin of the complemented strains decreased with the number of mutations introduced, suggesting that the wild-type enzymes are sensitive. The MICs of caspofungin determined by Etest and YeastOne for strains complemented with Pneumocystis enzymes (respectively, 0.125 and 0.12 mu g/ml) were identical to those upon complementation with the enzyme of C. albicans, for which caspofungin presents low MICs. However, they were lower than the MICs upon complementation with the enzyme of the resistant species Candida parapsilosis (0.19 and 0.25 mu g/ml). Sensitivity levels of Gsc1 enzymes of the three Pneumocystis species were similar. Our results suggest that P. jirovecii is sensitive to caspofungin during infections, as are P. carinii and P. murina.
机译:Echinocandin caspofungin抑制酶联的催化亚基GSC1合成1,3-β-葡聚糖,真菌壁的必需化合物。啮齿动物的研究表明,Caspofungin对肺肺肺腹部有效。然而,它对Pneumocystis jirovecii的效果,只感染人类的​​物种仍然存在争议。本研究的目的是评估P.Jirovecii GSC1亚基的Caspofungin的敏感性,以及分别是大鼠和小鼠的肺肺炎Carinii和Pneumocystis Murina的敏感性。在没有建立的肺膜质物种的体外培养方法的情况下,我们使用了酿酒酵母GSC1的功能互补。在真菌病原体念珠菌蛋白白醛汉语中,导致GSC1中氨基酸取代的突变赋予Caspofungin的抗性。我们使用点定向诱变将相应的突变介绍到肺细胞上GSC1基因。在点稀释试验中,互补应变的Caspofungin的敏感性随着引入的突变的数量而降低,表明野生型酶是敏感的。 Caspofungin的麦克风素由Etest和Yeastone用于互补的肺细胞酶(分别,0.125和0.12μg/ ml)与C.古木儿酶酶的互补相同,其中Caspofungin呈现低麦克风。然而,它们在互补物种念珠菌甲状腺素(0.19和0.25μg/ ml)的酶补充时低于麦克风。三种肺细胞物种GSC1酶的敏感性水平相似。我们的研究结果表明,P.Jirovecii在感染期间对Caspofungin敏感,如P. Carinii和P.Murina。

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