首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >A yeast sterol auxotroph (erg25) is rescued by addition of azole antifungals and reduced levels of heme
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A yeast sterol auxotroph (erg25) is rescued by addition of azole antifungals and reduced levels of heme

机译:通过添加唑类抗真菌药和降低血红素水平可以拯救酵母固醇营养缺陷型(erg25)

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摘要

Genetic disruption of the Saccharomyces cerevisiae C-4 sterol methyl oxidase ERG25 gene leads to sterol auxotrophy. We have characterized a suppression system that requires two mutations to restore viability to this disrupted strain. One suppressor mutation is erg11, which is blocked in 14α-demethylation of lanosterol and is itself an auxotroph. The second suppressor mutation required is either slu1 or slu2 (suppressor of lanosterol utilization). These mutations are leaky versions of HEM2 and HEM4, respectively; addition of exogenous hemin reverses the suppressing effects of slu1 and slu2. Suppression of erg25 by erg11 slu1 (or erg11 slu2) results in a slow-growing strain in which lanosterol, the first sterol in the pathway, accumulates. This result indicates that endogenously synthesized lanosterol can substitute for ergosterol and support growth. In the triple mutants, all but 1 (ERG6) of the 13 subsequent reactions of the ergosterol pathway are inactive. Azole antibiotics (clotrimazole, ketoconazole, and itraconazole) widely used to combat fungal infections are known to do so by inhibiting the ERG11 gene product, the 14α-demethylase. In this investigation, we demonstrate that treatment of the sterol auxotrophs erg25 slu1 or erg25 slu2 with azole antibiotics paradoxically restores viability to these strains in the absence of sterol supplementation via the suppression system we have described.
机译:酿酒酵母C-4固醇甲基氧化酶ERG25基因的遗传破坏导致固醇营养缺陷。我们已经表征了一个抑制系统,该系统需要两个突变才能恢复该突变菌株的生存力。一种抑制突变是erg11,它在羊毛甾醇的14α-去甲基化中受阻,本身就是营养缺陷型。所需的第二个抑制子突变是slu1或slu2(羊毛甾醇利用的抑制子)。这些突变分别是HEM2和HEM4的泄漏版本。外源血红素的添加逆转了slu1和slu2的抑制作用。 erg11 slu1(或erg11 slu2)对erg25的抑制导致菌株缓慢生长,其中该途径中的第一个固醇lanosterol蓄积在其中。该结果表明内源性合成的羊毛甾醇可以代替麦角固醇并支持生长。在三重突变体中,麦角固醇途径的13个后续反应中除1个(ERG6)均无效。众所周知,通过抑制ERG11基因产物14α-脱甲基酶,可广泛用于对抗真菌感染的偶氮类抗生素(克霉唑,酮康唑和伊曲康唑)可以做到这一点。在这项研究中,我们证明了使用唑类抗生素处理固醇营养缺陷型erg25 slu1或erg25 slu2时,通过我们所描述的抑制系统在没有固醇补充的情况下反常地恢复了这些菌株的活力。

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