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曲霉属中 velvet 调控因子的特性。

Characterization of the velvet regulators in Aspergillus fumigatus.

机构信息

Department of Bacteriology, University of Wisconsin, Madison, WI, USA.

出版信息

Mol Microbiol. 2012 Nov;86(4):937-53. doi: 10.1111/mmi.12032. Epub 2012 Sep 25.

DOI:10.1111/mmi.12032
PMID:22970834
Abstract

Fungal development and secondary metabolism is intimately associated via activities of the fungi-specific velvet family proteins. Here we characterize the four velvet regulators in the opportunistic human pathogen Aspergillus fumigatus. The deletion of AfuvosA, AfuveA and AfuvelB causes hyperactive asexual development (conidiation) and precocious and elevated accumulation of AfubrlA during developmental progression. Moreover, the absence of AfuvosA, AfuveA or AfuvelB results in the abundant formation of conidiophores and highly increased AfubrlA mRNA accumulation in liquid submerged culture, suggesting that they act as repressors of conidiation. The deletion of AfuvosA or AfuvelB causes a reduction in conidial trehalose amount, long-term spore viability, conidial tolerance to oxidative and UV stresses, and accelerated and elevated conidial germination regardless of the presence or absence of an external carbon source, suggesting an interdependent role of them in many aspects of fungal biology. Genetic studies suggest that AfuAbaA activates AfuvosA and AfuvelB expression during the mid to late phase of conidiation. Finally, the AfuveA null mutation can be fully complemented by Aspergillus nidulans VeA, which can physically interact with AfuVelB and AfuLaeA in vivo. A model depicting the similar yet different roles of the velvet regulators governing conidiation and sporogenesis in A. fumigatus is presented.

摘要

真菌的发育和次生代谢通过真菌特有的 velvet 家族蛋白的活性密切相关。在这里,我们对机会性病原体烟曲霉中的四个 velvet 调节剂进行了表征。AfuvosA、AfuveA 和 AfuvelB 的缺失导致无性发育(分生孢子形成)过度活跃,并在发育进程中提前和升高 AfubrlA 的积累。此外,AfuvosA、AfuveA 或 AfuvelB 的缺失导致大量分生孢子梗的形成,以及液体浸没培养中 AfubrlA mRNA 积累的高度增加,表明它们作为分生孢子形成的抑制剂发挥作用。AfuvosA 或 AfuvelB 的缺失导致分生孢子海藻糖含量减少、长期孢子活力、分生孢子对氧化和 UV 应激的耐受性降低,以及无论是否存在外部碳源,分生孢子的萌发加速和升高,表明它们在真菌生物学的许多方面具有相互依赖的作用。遗传研究表明,AfuAbaA 在分生孢子形成的中期到后期激活 AfuvosA 和 AfuvelB 的表达。最后,AfuveA 缺失突变可以被 Aspergillus nidulans VeA 完全互补,后者可以在体内与 AfuVelB 和 AfuLaeA 物理相互作用。提出了一个模型,描绘了 velvet 调节剂在烟曲霉中调控分生孢子形成和孢子发生的相似但又不同的作用。

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