首页> 美国卫生研究院文献>other >WdChs1p a class II chitin synthase is more responsible than WdChs2p (Class I) for normal yeast reproductive growth in the polymorphic pathogenic fungus Wangiella (Exophiala) dermatitidis
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WdChs1p a class II chitin synthase is more responsible than WdChs2p (Class I) for normal yeast reproductive growth in the polymorphic pathogenic fungus Wangiella (Exophiala) dermatitidis

机译:WdChs1pII类几丁质合酶比WdChs2p(I类)对多态性致病性真菌旺吉氏菌(Exophiala)dermatitidis中正常酵母的生殖生长负责。

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摘要

The chitin synthase gene WdCHS1 was isolated from a partial genomic DNA library of the pathogenic polymorphic fungus Wangiella dermatitidis. Sequencing showed that WdCHS1 encoded a class II chitin synthase composed of 988 amino acids. Disruption of WdCHS1 produced strains that were hyperpigmented in rich media, grew as yeast at wild-type rates at both 25 and 37°C and were as virulent as the wild type in a mouse model. However, detailed morphological and cytological studies of the wdchs1Δ mutants showed that yeast cells often failed to separate, tended to be enriched with chitin in septal regions and, sometimes, were enlarged with multiple nuclei, had broader mother cell–daughter bud regions and had other cell wall defects seen considerably less often than in the wild type or wdchs2Δ strains. Disruption of WdCHS1 and WdCHS2 in the same background revealed that WdChs1p had functions synergistic to those of WdChs2p, because mutants devoid of both isozymes produced growth that was very abnormal at 25°C and was not viable at 37°C unless osmotically stabilized. These results suggested that WdChs1p was more responsible than WdChs2p for normal yeast cell reproductive growth because strains with defects in the latter exhibited no morphological abnormalities, whereas those with defects in WdChs1p were frequently impaired in one or more yeast developmental processes.
机译:几丁质合酶基因WdCHS1是从致病多态性真菌Wangiella dermatitidis的部分基因组DNA文库中分离得到的。测序表明,WdCHS1编码由988个氨基酸组成的II类几丁质合酶。破坏WdCHS1产生的菌株在丰富的培养基中色素沉着过度,在25和37°C时均以酵母在野生型速率下生长,并且在小鼠模型中具有与野生型相同的毒性。但是,对wdchs1Δ突变体进行的详细形态学和细胞学研究表明,酵母细胞常常无法分离,往往在隔片区域富含几丁质,有时会扩大,具有多个核,具有较宽的母细胞-女儿芽区域,并具有其他细胞壁缺陷的出现频率明显低于野生型或wdchs2Δ菌株。在相同背景下破坏WdCHS1和WdCHS2表明,WdChs1p具有与WdChs2p协同的功能,因为缺乏这两种同功酶的突变体产生的生长在25°C时非常异常,除非在渗透作用下稳定,否则在37°C时不可行。这些结果表明,WdChs1p比WdChs2p对正常酵母细胞的生殖生长负有更大责任,因为后者中缺陷的菌株没有形态异常,而WdChs1p缺陷的菌株在一个或多个酵母的发育过程中经常受到损害。

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