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首页> 外文期刊>Fungal Genetics and Biology >Gliotoxin effects on fungal growth: Mechanisms and exploitationTI Gliotoxin effects on fungal growth: Mechanisms and exploitation
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Gliotoxin effects on fungal growth: Mechanisms and exploitationTI Gliotoxin effects on fungal growth: Mechanisms and exploitation

机译:胶质毒素对真菌生长的影响:机理和利用TI胶质毒素对真菌生长的影响:机理和利用

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Although initially investigated for its antifungal properties, little is actually known about the effect of gliotoxin on Aspergillus fumigatus and other fungi. We have observed that exposure of A. fumigatus to exogenous gliotoxin (14 mu g/ml), under gliotoxin-limited growth conditions, results in significant alteration of the expression of 27 proteins (up- and down-regulated >1.9-fold; p < 0.05) including de novo expression of Cu, Zn superoxide dismutase, up-regulated allergen Asp f3 expression and down-regulated catalase and a peroxiredoxin levels. Significantly elevated glutathione GSH levels (p < 0.05), along with concomitant resistance to diamide, were evident in A. fumigatus Delta gliT, lacking gliotoxin oxidoreductase, a gliotoxin self-protection gene. Saccharomyces cerevisiae deletents (Delta sod1 and Delta yap1) were hypersensitive to exogenous gliotoxin, while Delta gsh1 was resistant. Significant gliotoxin-mediated (5 mu g/ml) growth inhibition (p < 0.001) of Aspergillus nidulans, Aspergillus terreus, Aspergillus niger, Cochliobolus heterostrophus and Neurospora crassa was also observed. Growth of Aspergillus flavus, Fusarium graminearum and Aspergillus oryzae was significantly inhibited (p < 0.001) at gliotoxin (10 mu g/ml), indicating differential gliotoxin sensitivity amongst fungi. Re-introduction of gliT into A. fumigatus Delta gliT, at a different locus (ctsD; AFUA_4G07040, an aspartic protease), with selection on gliotoxin, facilitated deletion of ctsD without use of additional antibiotic selection markers. Absence of ctsD expression was accompanied by restoration of gliT expression, and resistance to gliotoxin. Thus, we propose gliT/gliotoxin as a useful selection marker system for fungal transformation. Finally, we suggest incorporation of gliotoxin sensitivity assays into all future fungal functional genomic studies
机译:尽管最初就其抗真菌特性进行了研究,但实际上对胶质毒素对烟曲霉和其他真菌的作用了解甚少。我们已经观察到,在烟曲霉毒素限制的生长条件下,烟曲霉暴露于外源性葡毒素(14μg / ml)会导致27种蛋白表达的显着改变(上调和下调> 1.9倍; p <0.05)包括Cu的从头表达,锌超氧化物歧化酶,过敏原Asp f3表达上调,过氧化氢酶和过氧化物酶原水平下调。烟曲霉Delta gliT中谷胱甘肽GSH的水平显着升高(p <0.05),同时伴有对二酰胺的抗性,而该基因缺乏葡聚糖毒素自我保护基因,即葡聚糖毒素氧化还原酶。酿酒酵母的删除(三角洲sod1和三角洲yap1)对外源性胶质毒素过敏,而三角洲gsh1是有抵抗力的。还观察到了由胶体毒素介导的(5μg / ml)构巢曲霉,土曲霉,黑曲霉,异曲霉和异孢曲霉的生长抑制(p <0.001)。黄曲霉菌,禾谷镰刀菌和米曲霉的生长在胶质毒素(10μg / ml)时被显着抑制(p <0.001),表明真菌之间对胶质毒素的敏感性不同。将gliT重新引入到烟曲霉Delta gliT中,在另一个位置(ctsD; AFUA_4G07040,一种天冬氨酸蛋白酶),并选择了gliotoxin,有助于ctsD的删除,而无需使用其他抗生素选择标记。 ctsD表达的缺乏伴随着gliT表达的恢复和对gliotoxin的抗性。因此,我们提出gliT / gliotoxin作为真菌转化的有用的选择标记系统。最后,我们建议将胶体毒素敏感性测定法纳入所有未来的真菌功能基因组研究中

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