真菌的氧化应激反应途径。

Q3 Agricultural and Biological Sciences
Hajar Yaakoub, Sara Mina, Alphonse Calenda, Jean-Philippe Bouchara, Nicolas Papon
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引用次数: 0

摘要

真菌对任何压力的反应都是复杂的、特异的和多层次的,尽管它只使用了几个进化保守的调节因子。这就产生了一种假设,即一种调控因子可以操作不止一种应激特异性反应。尽管这一假设成立,但目前对驱动反应特异性和充分性的分子机制的了解仍很有限。解密真菌对氧化应激的反应可能有助于填补这些知识空白,因为氧化应激是任何一种真菌生态位中遇到的最多的应激类型之一。关于 HOG 通路以及 Yap1- 和 Skn7 相关通路在真菌暴露于氧化应激时启动独特而强大的反应中的作用的数据不断积累。在此,我们回顾了最近和最相关的研究,这些研究报告了病原真菌和机会真菌在应对氧化应激时这些途径各自的贡献,并对两种不同的模型--芽殖酵母和裂殖酵母--进行了平行概述。鉴于应激特异性反应的概念以及活性氧在真菌发育过程中的重要性,我们首先介绍了氧化还原生物学和氧化应激这一不断扩展的领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Oxidative stress response pathways in fungi.

Fungal response to any stress is intricate, specific, and multilayered, though it employs only a few evolutionarily conserved regulators. This comes with the assumption that one regulator operates more than one stress-specific response. Although the assumption holds true, the current understanding of molecular mechanisms that drive response specificity and adequacy remains rudimentary. Deciphering the response of fungi to oxidative stress may help fill those knowledge gaps since it is one of the most encountered stress types in any kind of fungal niche. Data have been accumulating on the roles of the HOG pathway and Yap1- and Skn7-related pathways in mounting distinct and robust responses in fungi upon exposure to oxidative stress. Herein, we review recent and most relevant studies reporting the contribution of each of these pathways in response to oxidative stress in pathogenic and opportunistic fungi after giving a paralleled overview in two divergent models, the budding and fission yeasts. With the concept of stress-specific response and the importance of reactive oxygen species in fungal development, we first present a preface on the expanding domain of redox biology and oxidative stress.

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来源期刊
Italus Hortus
Italus Hortus Agricultural and Biological Sciences-Food Science
CiteScore
1.70
自引率
0.00%
发文量
18
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