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Chitin deacetylases Cod4 and Cod7 are involved in polar growth of Aspergillus fumigatus

机译:几丁质脱乙酰酶COD4和COD7参与曲霉菌灰岩的极性生长

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Chitin is one of the key components of fungal cell wall, and chitin deacetylases (CDAs) have been found in fungi; however, their functions remain unknown. Aspergillus fumigatus is known to cause fatal invasive aspergillosis (IA) among immunocompromised patients with a high mortality rate. Although the A.?fumigatus cell wall has long been taken as a unique target for drug development, its dynamic remodeling is complicated and not well understood. Seven putative CDAs are annotated in the A.?fumigatus genome. In this study, we analyzed the function of the putative CDAs, Cod4 and Cod7, in A.?fumigatus. Biochemical analysis of recombinant proteins showed that Cod4 preferentially deacetylated (GlcNAc)4 and was less active on chitooligosaccharides with DP??5, whereas Cod7 was unable to catalyze deacetylation. Simulation of three‐dimensional structure revealed that both Cod4 and Cod7 shared a similar folding pattern with HyPgdA from Helicobacter pylori and, similar to HyPgdA, a substitution of Thr8 by Ala8 in Cod7 abolished its CDA activity. Deletion of the cod4, cod7, or both in A.?fumigatus led to polarity abnormality and increased conidiation. Furthermore, the expression level of the genes related to polarity was upregulated in the mutants. Our results demonstrated that Cod4 and Cod7 were involved in polarity, though Cod4 was inactive.
机译:几丁质是真菌细胞壁的关键组分之一,并且在真菌中发现了几丁酸丁脱乙酰酶(CDAs);但是,它们的功能仍然是未知的。众所周知,曲霉属植物毒蕈毒蕈法毒蕈造成致命侵入性患者的致命侵袭性曲霉病(IA),具有高死亡率的患者。虽然A.?Fumigatus细胞壁长期被作为药物发育的独特目标,但其动态重塑是复杂的,并且不太了解。七个推定的CDA在A.?Fumigatus基因组中注释。在这项研究中,我们分析了推定的CDA,COD4和COD7的功能在A.?Fumigatus中。重组蛋白的生化分析表明,COD4优先脱乙酰化(GLCNAc)4,并在具有DP的氯寡糖中的活性较低,而COD7不能催化脱乙酰化。三维结构的仿真显示,鳕鱼4和COD7与幽门螺杆菌的Hymga共享类似的折叠模式,类似于Hymga,COD7中Ala8的Ala8取代Ala8的替代物的催眠模式废除了其CDA活性。删除COD4,COD7,或两者在A.?Fumigatus中导致极性异常和增加的结合。此外,在突变体中上调与极性有关的基因的表达水平。我们的结果表明,COD4和COD7涉及极性,但COD4无效。

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