首页> 外文期刊>Microbiology and Immunology >Catalase gene disruptant of the human pathogenic yeast Candida albicans is defective in hyphal growth, and a catalase-specific inhibitor can suppress hyphal growth of wild-type cells.
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Catalase gene disruptant of the human pathogenic yeast Candida albicans is defective in hyphal growth, and a catalase-specific inhibitor can suppress hyphal growth of wild-type cells.

机译:人类病原性酵母白色念珠菌的过氧化氢酶基因破坏剂在菌丝生长方面存在缺陷,并且过氧化氢酶特异性抑制剂可以抑制野生型细胞的菌丝生长。

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Although the catalase gene (CAT1) disruptant of the human pathogenic yeast Candida albicans was viable under ordinary growth conditions, we previously found that it could not grow on YPD (yeast extract/peptone/dextrose) containing SDS or at higher growth temperatures. To investigate the pleiotrophic nature of the disruptant, we examined the effect of the catalase inhibitor 3-AT on the growth of wild-type strains. Surprisingly, the addition of 3-AT and SDS caused the wild-type cells to be non-viable on YPD plates. We found an additional phenotype of the catalase gene disruptant: it did not produce normal hyphae on Spider medium. Hyphal growth was observed in a CAP1 (Candida AP-1-like protein gene) disruptant, a HOG1 (high-osmolarity glycerol signaling pathway gene) disruptant, and the double CAP1/HOG1 disruptant, suggesting that the defect in hyphal formation by the catalase disruptant was independent of these genes. Addition of 3-AT and SDS to hyphae-inducing media suppressed growth of normal hyphae inthe wild-type strain. The potential necessity for catalase action upon exposure to hyphae-inducing conditions was confirmed by the immediate elevation of the catalase gene message. In spite of the requirement for catalase during hyphal growth, the catalase gene disruptant was capable of forming germ tubes in medium containing serum.
机译:尽管人类病原性酵母白色念珠菌的过氧化氢酶基因(CAT1)破坏剂在正常生长条件下是可行的,但我们先前发现它不能在含有SDS的YPD(酵母提取物/蛋白pe /葡萄糖)或更高的生长温度下生长。为了研究破坏剂的多营养性质,我们研究了过氧化氢酶抑制剂3-AT对野生型菌株生长的影响。出乎意料的是,添加3-AT和SDS导致野生型细胞在YPD平板上无法存活。我们发现了过氧化氢酶基因破坏基因的另一种表型:它在蜘蛛培养基上不产生正常的菌丝。在CAP1(Candida AP-1样蛋白基因)破坏物,HOG1(高渗透压甘油信号通路基因)破坏物和双CAP1 / HOG1破坏物中观察到菌丝生长,表明过氧化氢酶在菌丝形成方面存在缺陷破坏者独立于这些基因。在菌丝诱导培养基中添加3-AT和SDS可以抑制野生型菌株中正常菌丝的生长。过氧化氢酶基因信息的立即升高证实了在暴露于菌丝诱导条件下过氧化氢酶作用的潜在必要性。尽管在菌丝生长过程中需要过氧化氢酶,但过氧化氢酶基因破坏剂仍能够在含有血清的培养基中形成胚芽管。

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