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首页> 外文期刊>Microbiology >The cell wall stress response in Aspergillus niger involves increased expression of the glutamine?:?fructose-6-phosphate amidotransferase-encoding gene (gfaA) and increased deposition of chitin in the cell wall
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The cell wall stress response in Aspergillus niger involves increased expression of the glutamine?:?fructose-6-phosphate amidotransferase-encoding gene (gfaA) and increased deposition of chitin in the cell wall

机译:Aspergillus niger中的细胞壁应力反应涉及谷氨酰胺的表达增加?:α果糖-6-磷酸酰胺酰胺转移酶编码基因(GFAA)和依甲酸的沉积增加

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Perturbation of cell wall synthesis in Saccharomyces cerevisiae, either by mutations in cell wall synthesis-related genes or by adding compounds that interfere with normal cell wall assembly, triggers a compensatory response to ensure cell wall integrity. This response includes an increase in chitin levels in the cell wall. Here it is shown that Aspergillus niger also responds to cell wall stress by increasing chitin levels. The increased chitin level in the cell wall was accompanied by increased transcription of gfaA, encoding the glutamine?:?fructose-6-phosphate amidotransferase enzyme, which is responsible for the first and a rate-limiting step in chitin synthesis. Cloning and disruption of the gfaA gene in A. niger showed that it was an essential gene, but that addition of glucosamine to the growth medium could rescue the deletion strain. When the plant-pathogenic fungus Fusarium oxysporum and food spoilage fungus Penicillium chrysogenum were subjected to cell wall stress, the transcript level of their gfa gene increased as well. These observations suggest that cell wall stress in fungi may generally lead to activation of the chitin biosynthetic pathway.
机译:通过细胞壁合成相关基因的突变或通过加入干扰正常细胞壁组件的化合物,扰动细胞壁合成的扰动,触发补偿响应以确保细胞壁完整性。该响应包括细胞壁中的几丁质水平的增加。在这里,表明曲霉菌尼格斯通过增加几丁质水平,患者也应对细胞壁应力进行响应。细胞壁中的几丁蛋白水平增加伴随着GFAA的转录,编码谷氨酰胺?:α果糖-6-磷酸酰胺转移酶,其负责甲壳素合成中的第一和速率限制步骤。 A. niger中GFAA基因的克隆和破坏表明它是一种必要的基因,但是加入葡糖胺至生长培养基可以拯救缺失菌株。当植物致病真菌镰刀菌和食物腐败真菌青霉酵素骨骨胁迫时,其GFA基因的转录物水平也增加。这些观察结果表明,真菌中的细胞壁应力通常可能导致丁蛋白生物合成途径的激活。

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