首页> 美国卫生研究院文献>Antimicrobial Agents and Chemotherapy >A Naturally Occurring Proline-to-Alanine Amino Acid Change in Fks1p in Candida parapsilosis Candida orthopsilosis and Candida metapsilosis Accounts for Reduced Echinocandin Susceptibility
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A Naturally Occurring Proline-to-Alanine Amino Acid Change in Fks1p in Candida parapsilosis Candida orthopsilosis and Candida metapsilosis Accounts for Reduced Echinocandin Susceptibility

机译:Fks1p中的自然发生脯氨酸到丙氨酸的氨基酸变化在假丝酵母假丝酵母​​和假丝酵母中导致棘手棘球and素敏感性降低

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摘要

Candida parapsilosis has emerged as a common cause of invasive fungal infection, especially in Latin America and in the neonatal setting. C. parapsilosis is part of a closely related group of organisms that includes the species Candida orthopsilosis and Candida metapsilosis. All three species show elevated MICs for the new echinocandin class drugs caspofungin, micafungin, and anidulafungin relative to other Candida species. Despite potential impacts on therapy, the mechanism behind this reduced echinocandin susceptibility has not been determined. In this report, we investigated the role of a naturally occurring Pro-to-Ala substitution at amino acid position 660 (P660A), immediately distal to the highly conserved hot spot 1 region of Fks1p, in the reduced-echinocandin-susceptibility phenotype. Kinetic inhibition studies demonstrated that glucan synthase from the C. parapsilosis group was 1 to 2 logs less sensitive to echinocandin drugs than the reference enzyme from C. albicans. Furthermore, clinical isolates of C. albicans and C. glabrata which harbor mutations at this equivalent position also showed comparable 2-log decreases in target enzyme sensitivity, which correlated with increased MICs. These mutations also resulted in 2.4- to 18.8-fold-reduced Vmax values relative to those for the wild-type enzyme, consistent with kinetic parameters obtained for C. parapsilosis group enzymes. Finally, the importance of the P660A substitution for intrinsic resistance was confirmed by engineering an equivalent P647A mutation into Fks1p of Saccharomyces cerevisiae. The mutant glucan synthase displayed characteristic 2-log decreases in sensitivity to the echinocandin drugs. Overall, these data firmly indicate that a naturally occurring P660A substitution in Fks1p from the C. parapsilosis group accounts for the reduced susceptibility phenotype.
机译:副念珠菌已成为侵袭性真菌感染的常见原因,尤其是在拉丁美洲和新生儿环境中。副翼念珠菌是一组紧密相关的生物的一部分,包括直立念珠菌和间念珠菌。相对于其他念珠菌属,这三种棘皮菌素类新药卡泊芬净,米卡芬净和阿尼芬净对所有三个物种的MIC均升高。尽管对治疗有潜在影响,但棘皮生物碱敏感性降低的背后机制尚未确定。在本报告中,我们研究了在棘皮动物素敏感性降低的表型中,Fks1p高度保守的热点1区紧邻末端的氨基酸位置660(P660A)上天然存在的Pro-to-Ala取代的作用。动力学抑制研究表明,副寄生念珠菌组的葡聚糖合酶对棘皮菌素药物的敏感性比白念珠菌的参考酶低1至2个对数。此外,在此等效位置带有突变的白色念珠菌和光滑念珠菌的临床分离株也显示出靶酶敏感性的2-log下降,与MIC升高相关。相对于野生型酶而言,这些突变还导致Vmax值降低了2.4到18.8倍,这与C. parapsilosisosis组酶的动力学参数一致。最后,通过将等价的P647A突变工程改造为酿酒酵母的Fks1p,证实了P660A取代对内在抗性的重要性。突变葡聚糖合酶显示出特征性2-log对棘皮菌素药物的敏感性降低。总体而言,这些数据明确表明,副寄生念珠菌组在Fks1p中天然存在的P660A替代导致敏感性表型降低。

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