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丝状真菌费氏新萨托菌(费氏曲霉)中的亲水性蛋白对几种类型的微生物水分胁迫具有保护活性。

Hydrophilins in the filamentous fungus Neosartorya fischeri (Aspergillus fischeri) have protective activity against several types of microbial water stress.

作者信息

van Leeuwen M R, Wyatt T T, van Doorn T M, Lugones L G, Wösten H A B, Dijksterhuis J

机构信息

CBS-KNAW Fungal Biodiversity Centre, Uppsalalaan 8, Utrecht, 3584 CT, The Netherlands.

Microbiology, Utrecht University, Padualaan 8, Utrecht, 3584 CH, The Netherlands.

出版信息

Environ Microbiol Rep. 2016 Feb;8(1):45-52. doi: 10.1111/1758-2229.12349. Epub 2015 Dec 21.

Abstract

Hydrophilins are proteins that occur in all domains of life and protect cells and organisms against drought and other stresses. They include most of the late embryogenesis abundant (LEA) proteins and the heat shock protein (HSP) Hsp12. Here, the role of a predicted LEA-like protein (LeamA) and two Hsp12 proteins (Hsp12A and Hsp12B) of Neosartorya fischeri was studied. This filamentous fungus forms ascospores that belong to the most stress-resistant eukaryotic cells described to date. Heterologous expression of LeamA, Hsp12A and Hsp12B resulted in increased tolerance against salt and osmotic stress in Escherichia coli. These proteins were also shown to protect lactate dehydrogenase against dry heat and freeze-thaw cycles in vitro. Deletion of leamA caused diminished viability of sexual ascospores after drought and heat. This is the first report on functionality of Hsp12 and putative LeamA proteins derived from filamentous fungi, and their possible role in N. fischeri ascospore resistance against desiccation, high temperature and osmotic stress is discussed.

摘要

亲水性蛋白存在于生命的所有领域,可保护细胞和生物体免受干旱及其他胁迫。它们包括大多数胚胎后期丰富(LEA)蛋白和热休克蛋白(HSP)Hsp12。在此,对费氏新萨托菌中一种预测的类LEA蛋白(LeamA)和两种Hsp12蛋白(Hsp12A和Hsp12B)的作用进行了研究。这种丝状真菌形成的子囊孢子属于迄今为止所描述的最具抗逆性的真核细胞。LeamA、Hsp12A和Hsp12B的异源表达导致大肠杆菌对盐和渗透胁迫的耐受性增强。这些蛋白在体外还显示出能保护乳酸脱氢酶免受干热和冻融循环的影响。leamA的缺失导致干旱和高温处理后有性子囊孢子的活力降低。这是关于丝状真菌来源的Hsp12和假定的LeamA蛋白功能的首次报道,并讨论了它们在费氏新萨托菌子囊孢子抗干燥、高温和渗透胁迫方面可能发挥的作用。

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