Padmanabhan Nirmala, Fichtner Lars, Dickmanns Achim, Ficner Ralf, Schulz Jörg B, Braus Gerhard H
Abteilung Molekulare Mikrobiologie und Genetik, Institut für Mikrobiologie und Genetik, Georg August Universität Göttingen, Germany.
Mol Biol Cell. 2009 Jan;20(1):68-77. doi: 10.1091/mbc.e08-02-0178. Epub 2008 Oct 22.
Ynm3 is the only budding yeast protein possessing a combination of serine protease and postsynaptic density 95/disc-large/zona occludens domains, a defining feature of the high temperature requirement A (HtrA) protein family. The bacterial HtrA/DegP is involved in protective stress response to aid survival at higher temperatures. The role of mammalian mitochondrial HtrA2/Omi in protein quality control is unclear, although loss of its protease activity results in susceptibility toward Parkinson's disease, in which mitochondrial dysfunction and impairment of protein folding and degradation are key pathogenetic features. We studied the role of the budding yeast HtrA, Ynm3, with respect to unfolding stresses. Similar to Escherichia coli DegP, we find that Ynm3 is a dual chaperone-protease. Its proteolytic activity is crucial for cell survival at higher temperature. Ynm3 also exhibits strong general chaperone activity, a novel finding for a eukaryotic HtrA member. We propose that the chaperone activity of Ynm3 may be important to improve the efficiency of proteolysis of aberrant proteins by averting the formation of nonproductive toxic aggregates and presenting them in a soluble state to its protease domain. Suppression studies with Deltaynm3 led to the discovery of chaperone activity in a nucleolar peptidyl-prolyl cis-trans isomerase, Fpr3, which could partly relieve the heat sensitivity of Deltaynm3.
Ynm3是芽殖酵母中唯一一种兼具丝氨酸蛋白酶和突触后致密蛋白95/盘状大蛋白/紧密连接蛋白结构域的蛋白质,这是高温需求A(HtrA)蛋白家族的一个决定性特征。细菌的HtrA/DegP参与保护性应激反应,以帮助在较高温度下存活。哺乳动物线粒体HtrA2/Omi在蛋白质质量控制中的作用尚不清楚,尽管其蛋白酶活性丧失会导致对帕金森病易感,而线粒体功能障碍以及蛋白质折叠和降解受损是帕金森病的关键致病特征。我们研究了芽殖酵母HtrA即Ynm3在应对解折叠应激方面的作用。与大肠杆菌DegP相似,我们发现Ynm3是一种兼具伴侣蛋白和蛋白酶功能的双重蛋白。其蛋白水解活性对于细胞在较高温度下的存活至关重要。Ynm3还表现出强大的通用伴侣活性,这是真核生物HtrA成员的一个新发现。我们提出,Ynm3的伴侣活性可能很重要,它可以通过避免形成无活性的有毒聚集体,并将异常蛋白以可溶状态呈现给其蛋白酶结构域,从而提高对异常蛋白的蛋白水解效率。对缺失Ynm3的菌株进行的抑制研究导致在核仁肽基脯氨酰顺反异构酶Fpr3中发现了伴侣活性,它可以部分缓解缺失Ynm3菌株的热敏感性。