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HET-s朊病毒或HET-s朊病毒结构域的非孟德尔遗传决定了嗜鸟粪盘菌中的het-S孢子杀伤系统。

Non-mendelian inheritance of the HET-s prion or HET-s prion domains determines the het-S spore killing system in Podospora anserina.

作者信息

Dalstra Henk J P, van der Zee Remko, Swart Klaas, Hoekstra Rolf F, Saupe Sven J, Debets Alfons J M

机构信息

Laboratory of Genetics, Wageningen University, Arboretumlaan 4, 6703 BD Wageningen, The Netherlands.

出版信息

Fungal Genet Biol. 2005 Oct;42(10):836-47. doi: 10.1016/j.fgb.2005.05.004.

Abstract

Two alleles of the het-s/S locus occur naturally in the filamentous fungus Podospora anserina, het-s and het-S. The het-s encoded protein can form a prion that propagates a self-perpetuating amyloid aggregate, resulting in two phenotypes for the het-s strains. The prion-infected [Het-s] shows an antagonistic interaction to het-S whereas the prion-free [Het-s*] is neutral in interaction to het-S. The antagonism between [Het-s] and het-S is seen as heterokaryon incompatibility at the somatic level and as het-S spore killing in the sexual cycle. Two different domains of the HET-s and HET-S proteins have been identified, and a structure-function relationship has been established for interactions at the somatic level. In this study, we correlate accumulation of the HET-s and HET-S proteins (visualized using GFP) during the sexual cycle with timing of het-S spore abortion. Also, we present the structure-function relationship of the HET-s domains for interactions in the sexual cycle. We show that the constructs that ensure het-s incompatibility function in somatic mycelium are also active in het-S spore killing in the sexual cycle. In addition, paternal prion transmission and het-S spore killing has been found with the HET-s(157-289) truncated protein. The consequences of the unique transition from a coenocytic to a cellular state in the sexual phase and the timing, and localization of paternal and maternal HET-s and HET-S expression that are pertinent to prion transmission, and het-S spore killing are elaborated. These data further support our previously proposed model for het-S spore killing.

摘要

丝状真菌嗜热栖热孢霉中het-s/S位点的两个等位基因het-s和het-S自然存在。het-s编码的蛋白质可形成一种朊病毒,该朊病毒能传播自我延续的淀粉样聚集体,导致het-s菌株出现两种表型。感染朊病毒的[Het-s]与het-S表现出拮抗相互作用,而无朊病毒的[Het-s*]与het-S相互作用时呈中性。[Het-s]与het-S之间的拮抗作用在体细胞水平表现为异核体不相容,在有性生殖周期中表现为het-S孢子致死。已鉴定出HET-s和HET-S蛋白的两个不同结构域,并建立了体细胞水平相互作用的结构-功能关系。在本研究中,我们将有性生殖周期中HET-s和HET-S蛋白的积累(用绿色荧光蛋白可视化)与het-S孢子败育的时间相关联。此外,我们还展示了有性生殖周期中相互作用的HET-s结构域的结构-功能关系。我们发现,确保het-s不相容功能在体细胞菌丝体中起作用的构建体在有性生殖周期中对het-S孢子致死也有活性。此外,还发现了HET-s(157 - 289)截短蛋白的父本朊病毒传播和het-S孢子致死现象。阐述了有性生殖阶段从多核体状态到细胞状态的独特转变以及与朊病毒传播和het-S孢子致死相关的父本和母本HET-s和HET-S表达的时间和定位的后果。这些数据进一步支持了我们之前提出的het-S孢子致死模型。

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