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丝状真菌嗜热栖热放线菌中Nox家族的功能与调控:在纤维素降解中的新作用

Functions and regulation of the Nox family in the filamentous fungus Podospora anserina: a new role in cellulose degradation.

作者信息

Brun Sylvain, Malagnac Fabienne, Bidard Frédérique, Lalucque Hervé, Silar Philippe

机构信息

UFR des Sciences du Vivant, Univ Paris 7 Denis Diderot, 75013 Paris, France.

出版信息

Mol Microbiol. 2009 Oct;74(2):480-96. doi: 10.1111/j.1365-2958.2009.06878.x. Epub 2009 Sep 22.

Abstract

NADPH oxidases are enzymes that produce reactive oxygen species. Studies in mammals, plants and fungi have shown that they play important roles in differentiation, defence, host/pathogen interaction and mutualistic symbiosis. In this paper, we have identified a Podospora anserina mutant strain impaired for processes controlled by PaNox1 and PaNox2, the two Nox isoforms characterized in this model ascomycete. We show that the gene mutated is PaNoxR, the homologue of the gene encoding the regulatory subunit p67(phox), conserved in mammals and fungi, and that PaNoxR regulates both PaNox1 and PaNox2. Genome sequence analysis of P. anserina reveals that this fungus posses a third Nox isoform, PaNox3, related to human Nox5/Duox and plant Rboh. We have generated a knock-out mutant of PaNox3 and report that PaNox3 plays a minor role in P. anserina, if any. We show that PaNox1 and PaNox2 play antagonist roles in cellulose degradation. Finally, we report for the first time that a saprobic fungus, P. anserina, develops special cell structures dedicated to breach and to exploit a solid cellulosic substrate, cellophane. Importantly, as for similar structures present in some plant pathogens, their proper differentiation requires PaNox1, PaNox2, PaNoxR and the tetraspanin PaPls1.

摘要

NADPH氧化酶是产生活性氧的酶。对哺乳动物、植物和真菌的研究表明,它们在分化、防御、宿主/病原体相互作用和互利共生中发挥重要作用。在本文中,我们鉴定了一种嗜热栖热放线菌突变菌株,该菌株在由PaNox1和PaNox2控制的过程中受损,这两种Nox亚型在此模式子囊菌中得到了表征。我们表明,发生突变的基因是PaNoxR,它是编码调节亚基p67(phox)的基因的同源物,在哺乳动物和真菌中保守,并且PaNoxR调节PaNox1和PaNox2。嗜热栖热放线菌的基因组序列分析表明,这种真菌具有第三种Nox亚型PaNox3,它与人类Nox5/Duox和植物呼吸爆发氧化酶同源。我们构建了PaNox3的敲除突变体,并报告说PaNox3在嗜热栖热放线菌中作用较小(如果有作用的话)。我们表明,PaNox1和PaNox2在纤维素降解中起拮抗作用。最后,我们首次报告,一种腐生真菌嗜热栖热放线菌会形成特殊的细胞结构,专门用于突破和利用固体纤维素底物玻璃纸。重要的是,就像一些植物病原体中存在的类似结构一样,它们的正常分化需要PaNox1、PaNox2、PaNoxR和四跨膜蛋白PaPls1。

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