Katiyar Santosh K, Edlind Thomas D
Department of Microbiology and Immunology, Drexel University College of Medicine, 2900 Queen Lane, Philadelphia, PA 19129, USA.
Antimicrob Agents Chemother. 2009 May;53(5):1772-8. doi: 10.1128/AAC.00020-09. Epub 2009 Mar 2.
The opportunistic mold Fusarium solani is intrinsically resistant to cell wall synthesis-inhibiting echinocandins (ECs), including caspofungin and micafungin. Mutations that confer acquired EC resistance in Saccharomyces cerevisiae and other normally susceptible yeast species have been mapped to the Fks1 gene; among these is the mutation of residue 639 from Phe to Tyr (F639Y) within a region designated hot spot 1. Fks1 sequence analysis identified the equivalent of Y639 in F. solani as well as in Scedosporium prolificans, another intrinsically EC-resistant mold. To test its role in intrinsic EC resistance, we constructed Fks1 hybrids in S. cerevisiae that incorporate F. solani hot spot 1 and flanking residues. Hybrid construction was accomplished by a PCR-based method that was validated by studies with Fks1 sequences from EC-susceptible Aspergillus fumigatus and paired EC-susceptible and -resistant Candida glabrata isolates. In support of our hypothesis, hybrid Fks1 incorporating F. solani hot spot 1 conferred significantly reduced EC susceptibility, 4- to 8-fold less than that of wild-type S. cerevisiae and 8- to 32-fold less than that of the same hybrid with an F639 mutation. We propose that Fks1 sequences represent determinants of intrinsic EC resistance in Fusarium and Scedosporium species and, potentially, other fungi.
机会性霉菌茄病镰刀菌对包括卡泊芬净和米卡芬净在内的抑制细胞壁合成的棘白菌素(ECs)具有内在抗性。在酿酒酵母和其他通常敏感的酵母物种中,赋予获得性EC抗性的突变已定位到Fks1基因;其中包括在一个称为热点1的区域内,第639位残基从苯丙氨酸突变为酪氨酸(F639Y)。Fks1序列分析确定了茄病镰刀菌以及多育赛多孢菌(另一种对EC具有内在抗性的霉菌)中与Y639等效的位点。为了测试其在内在EC抗性中的作用,我们在酿酒酵母中构建了包含茄病镰刀菌热点1及其侧翼残基的Fks1杂种。杂种构建通过基于PCR的方法完成,该方法通过对来自对EC敏感的烟曲霉以及配对的对EC敏感和抗性的光滑念珠菌分离株的Fks1序列进行研究得到验证。支持我们的假设的是,包含茄病镰刀菌热点1的杂种Fks1对EC的敏感性显著降低,比野生型酿酒酵母低4至8倍,比具有F639突变的相同杂种低8至32倍。我们提出,Fks1序列代表了镰刀菌和赛多孢菌属以及可能其他真菌中内在EC抗性的决定因素。