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棘白菌素靶点Fks1p中的特定取代导致罕见实验室分离株和临床念珠菌属分离株的敏感性降低。

Specific substitutions in the echinocandin target Fks1p account for reduced susceptibility of rare laboratory and clinical Candida sp. isolates.

作者信息

Park S, Kelly R, Kahn J Nielsen, Robles J, Hsu M-J, Register E, Li W, Vyas V, Fan H, Abruzzo G, Flattery A, Gill C, Chrebet G, Parent S A, Kurtz M, Teppler H, Douglas C M, Perlin D S

机构信息

Public Health Research Institute, 225 Warren St., Newark, NJ 07103, USA.

出版信息

Antimicrob Agents Chemother. 2005 Aug;49(8):3264-73. doi: 10.1128/AAC.49.8.3264-3273.2005.

Abstract

An association between reduced susceptibility to echinocandins and changes in the 1,3-beta-d-glucan synthase (GS) subunit Fks1p was investigated. Specific mutations in fks1 genes from Saccharomyces cerevisiae and Candida albicans mutants are described that are necessary and sufficient for reduced susceptibility to the echinocandin drug caspofungin. One group of amino acid changes in ScFks1p, ScFks2p, and CaFks1p defines a conserved region (Phe 641 to Asp 648 of CaFks1p) in the Fks1 family of proteins. The relationship between several of these fks1 mutations and the phenotype of reduced caspofungin susceptibility was confirmed using site-directed mutagenesis or integrative transformation. Glucan synthase activity from these mutants was less susceptible to caspofungin inhibition, and heterozygous and homozygous Cafks1 C. albicans mutants could be distinguished based on the shape of inhibition curves. The C. albicans mutants were less susceptible to caspofungin than wild-type strains in a murine model of disseminated candidiasis. Five Candida isolates with reduced susceptibility to caspofungin were recovered from three patients enrolled in a clinical trial. Four C. albicans strains showed amino acid changes at Ser 645 of CaFks1p, while a single Candida krusei isolate had a deduced R1361G substitution. The clinical C. albicans mutants were less susceptible to caspofungin in the disseminated candidiasis model, and GS inhibition profiles and DNA sequence analyses were consistent with a homozygous fks1 mutation. Our results indicate that substitutions in the Fks1p subunit of GS are sufficient to confer reduced susceptibility to echinocandins in S. cerevisiae and the pathogens C. albicans and C. krusei.

摘要

研究了对棘白菌素敏感性降低与1,3-β-D-葡聚糖合酶(GS)亚基Fks1p变化之间的关联。描述了酿酒酵母和白色念珠菌突变体fks1基因中的特定突变,这些突变对于降低对棘白菌素类药物卡泊芬净的敏感性是必要且充分的。ScFks1p、ScFks2p和CaFks1p中的一组氨基酸变化定义了Fks1蛋白家族中的一个保守区域(CaFks1p的苯丙氨酸641至天冬氨酸648)。使用定点诱变或整合转化证实了其中几个fks1突变与卡泊芬净敏感性降低表型之间的关系。这些突变体的葡聚糖合酶活性对卡泊芬净抑制的敏感性较低,并且可以根据抑制曲线的形状区分白色念珠菌杂合和纯合Cafks1突变体。在播散性念珠菌病小鼠模型中,白色念珠菌突变体对卡泊芬净比野生型菌株更不敏感。从一项临床试验的三名患者中分离出五株对卡泊芬净敏感性降低的念珠菌。四株白色念珠菌菌株在CaFks1p的丝氨酸645处显示氨基酸变化,而一株克鲁斯念珠菌分离株有推导的R1361G替代。临床白色念珠菌突变体在播散性念珠菌病模型中对卡泊芬净更不敏感,并且GS抑制谱和DNA序列分析与纯合fks1突变一致。我们的结果表明,GS的Fks1p亚基中的替代足以使酿酒酵母以及病原体白色念珠菌和克鲁斯念珠菌对棘白菌素的敏感性降低。

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