首页> 外文期刊>The Journal of biological chemistry >SUN Proteins Belong to a Novel Family of β-(1,3)-Glucan-modifying Enzymes Involved in Fungal Morphogenesis
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SUN Proteins Belong to a Novel Family of β-(1,3)-Glucan-modifying Enzymes Involved in Fungal Morphogenesis

机译:阳光蛋白属于参与真菌形态发生的新型β-(1,3)葡萄糖修饰酶

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In yeasts, the family of SUN proteins has been involved in cell wall biogenesis. Here, we report the characterization of SUN proteins in a filamentous fungus, Aspergillus fumigatus. The function of the two A. fumigatus SUN genes was investigated by combining reverse genetics and biochemistry. During conidial swelling and mycelial growth, the expression of AfSUN1 was strongly induced, whereas the expression of AfSUN2 was not detectable. Deletion of AfSUN1 negatively affected hyphal growth and conidiation. A closer examination of the morphological defects revealed swollen hyphae, leaky tips, intrahyphal growth, and double cell wall, suggesting that, like in yeast, AfSun1p is associated with cell wall biogenesis. In contrast to AfSUN1, deletion of AfSUN2 either in the parental strain or in the AfSUN1 single mutant strain did not affect colony and hyphal morphology. Biochemical characterization of the recombinant AfSun1p and Candida albicans Sun41p showed that both proteins had a unique hydrolysis pattern: acting on β-(1,3)-oligomers from dimer up to insoluble β-(1,3)-glucan. Referring to the CAZy database, it is clear that fungal SUN proteins represent a new family of glucan hydrolases (GH132) and play an important morphogenetic role in fungal cell wall biogenesis and septation.
机译:在酵母中,Sun蛋白的家族已经参与了细胞壁生物发生。在这里,我们在丝状真菌中报告了Sun蛋白的表征,曲霉属植物。通过结合逆向遗传和生物化学来研究两种Fumigatus Sun基因的功能。在分枝膨胀和菌丝生长期间,强烈诱导AFSUN1的表达,而AFSUN2的表达是不可检测的。删除AFSUN1负面影响亚腿的生长和结合。仔细检查形态缺陷揭示了溶胀的菌丝,漏尖,内骨生长和双细胞壁,表明,如在酵母中,AFSUN1P与细胞壁生物发生有关。与AFSUN1相反,在亲本菌株或AFSUN1单一突变菌株中缺失AFSUN2并不影响菌落和亚酚形态。重组AFSUN1P和Candida albicans Sun41p的生化表征显示,两种蛋白质都具有独特的水解图案:作用于从二聚体上的β-(1,3) - 不溶于β-(1,3)葡聚糖。参考克服数据库,清楚的是,真菌阳光蛋白代表新的葡聚糖水解酶(GH132),并在真菌细胞壁生物发生和荚膜中起重要的形态发生作用。

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