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Survival and cytokinesis of Saccharomyces cerevisiae in the absence of chitin

机译:在没有几丁质的情况下,酿酒酵母的存活和细胞因子

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Most fungal cell walls are constructed with significant amounts of chitin, a linear polysaccharide that contributes mechanical resistance to the structure. In the yeast Saccharomyces cerevisiae, chitin is synthesized by three different isozymes, each of which has a separate cellular function. In this yeast, the most important role of chitin is in cytokinesis, when a thin primary septum is synthesized by chitin synthase II to separate mother and daughter cells. If no primary septum can be formed, an irregular remedial septum is synthesized, a process that relies on chitin synthase III. It was found that, with osmotic stabilization, S. cerevisiae tolerates a loss of all chitin synthase activities. Chitin-deficient mutants display a cytokinesis defect which leads to the formation of cell chains with incompletely separated cytoplasms. In these mutants septa are formed rarely. The few septa found are bulky structures which contain inclusions of cytoplasm. Nuclear division proceeds under these conditions, demonstrating that there is no cell cycle arrest triggered by a failure to form a septum between mother and daughter cell. A genetic suppressor arises quickly in chitin-deficient mutants, giving rise to the synthesis of chitin-free remedial septa. The suppressed chitin-free mutants grow well without osmotic stabilization and display hyper-resistance against the chitin-synthase inhibitor polyoxin D.
机译:大多数真菌细胞壁都构造成大量的几丁质,一种有助于对结构的机械抗性的线性多糖。在酵母酿酒酵母中,几丁质由三种不同的同工酶合成,每个单位具有单独的细胞功能。在这种酵母中,当用过丁蛋白合成酶II合成薄的主隔膜以分离母和子细胞时,甲壳素的最重要作用是在细胞因子中。如果没有形成初级隔膜,则合成不规则的防护管,依赖于甲壳素合酶III的方法。结果发现,随着渗透稳定化,S.酿酒酵母耐受所有几丁质合成酶活性的损失。缺素缺陷型突变体显示细胞因子缺陷,其导致细胞链的形成具有不完全分离的细胞质。在这些突变体中,静止是很少形成的。发现的少数隔膜是笨重的结构,含有细胞质的含量。核划分在这些条件下进行,表明在母亲和女儿细胞之间没有形成隔膜,没有细胞周期逮捕。遗传抑制突变型突变体中迅速产生,从而产生了无丁肽防护隔膜的合成。无渗透稳定化的抑制的丁引起的突变体在没有渗透稳定化并呈现对丁蛋白合成酶抑制剂Polyoxin D的超抗性。

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    《Microbiology》 |2004年第10期|共8页
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    Martin Schmidt;

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