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不同真菌中出芽酵母朊病毒决定簇序列的进化

Evolution of budding yeast prion-determinant sequences across diverse fungi.

作者信息

Harrison Luke B, Yu Zhan, Stajich Jason E, Dietrich Fred S, Harrison Paul M

机构信息

Department of Biology, McGill University, Stewart Biology Building, 1205 Docteur Penfield Ave, Montreal, QC, Canada H3A 1B1.

出版信息

J Mol Biol. 2007 Apr 20;368(1):273-82. doi: 10.1016/j.jmb.2007.01.070. Epub 2007 Feb 3.

DOI:10.1016/j.jmb.2007.01.070
PMID:17320905
Abstract

Prions are transmissible self-replicating alternative states of proteins. Four prions ([PSI+], [URE3], [RNQ+] and [NU+]) can be inherited cytoplasmically in Saccharomyces cerevisiae laboratory strains. In the case of [PSI+], there is increasing evidence that prion formation may engender mechanisms to uncover hidden genetic variation. Here, we have analysed the evolution of the prion-determinant (PD) domains across 21 fungi, focusing on compositional biases, repeats and substitution rates. We find evidence for constraint on all four PD domains, but each domain has its own evolutionary dynamics. For [PSI+], the Q/N bias is maintained in fungal clades that diverged one billion years ago, with purifying selection observed within the Saccharomyces species. The degree of Q/N bias is correlated with the degree of local homology to prion-associated repeats, which occur rarely in other proteins (<1% of sequences for the proteomes studied). The evolutionary conservation of Q/N bias in Sup35p is unusual, with only eight other S. cerevisiae proteins showing similar, phylogenetically deep patterns of bias conservation. The [URE3] PD domain is unique to Hemiascomycota; part of the PD domain shows purifying selection, whereas another part engenders bias changes between clades. Also, like for Sup35p, the [RNQ+] and [NU+] PD domains show purifying selection in Saccharomyces species. Additionally, in each proteome, we observe on average several hundred yeast-prion-like domains, with fewest in fission yeast. Our findings on yeast prion evolution provide further support for the functional significance of these molecules.

摘要

朊病毒是蛋白质的可传播的自我复制的变体状态。四种朊病毒([PSI+]、[URE3]、[RNQ+]和[NU+])可在酿酒酵母实验室菌株的细胞质中遗传。就[PSI+]而言,越来越多的证据表明朊病毒形成可能引发揭示隐藏遗传变异的机制。在这里,我们分析了21种真菌中朊病毒决定簇(PD)结构域的进化,重点关注组成偏好、重复序列和替换率。我们发现所有四个PD结构域都受到限制,但每个结构域都有其自身的进化动态。对于[PSI+],Q/N偏好性在十亿年前分化的真菌类群中得以维持,在酿酒酵母物种中观察到纯化选择。Q/N偏好程度与与朊病毒相关重复序列的局部同源程度相关,这些重复序列在其他蛋白质中很少出现(在所研究的蛋白质组序列中<1%)。Sup35p中Q/N偏好性的进化保守性很不寻常,酿酒酵母中只有其他八种蛋白质显示出类似的、系统发育上深度保守的偏好模式。[URE3] PD结构域是半子囊菌纲特有的;PD结构域的一部分显示出纯化选择,而另一部分则导致不同类群之间的偏好性变化。此外,与Sup35p一样,[RNQ+]和[NU+] PD结构域在酿酒酵母物种中也显示出纯化选择。此外,在每个蛋白质组中,我们平均观察到数百个酵母朊病毒样结构域,在裂殖酵母中最少。我们关于酵母朊病毒进化的研究结果为这些分子的功能重要性提供了进一步支持。

相似文献

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Evolution of budding yeast prion-determinant sequences across diverse fungi.不同真菌中出芽酵母朊病毒决定簇序列的进化
J Mol Biol. 2007 Apr 20;368(1):273-82. doi: 10.1016/j.jmb.2007.01.070. Epub 2007 Feb 3.
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The [URE3] prion is not conserved among Saccharomyces species.[URE3] 朊病毒在酿酒酵母物种中并不保守。
Genetics. 2005 Sep;171(1):23-34. doi: 10.1534/genetics.105.043489. Epub 2005 Jun 14.
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Oligopeptide repeats in the yeast protein Sup35p stabilize intermolecular prion interactions.酵母蛋白Sup35p中的寡肽重复序列可稳定分子间的朊病毒样蛋白相互作用。
EMBO J. 2001 May 1;20(9):2111-9. doi: 10.1093/emboj/20.9.2111.
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[Structure and functional similarity of yeast Sup35p and Ure2p proteins to mammalian prions].[酵母 Sup35p 和 Ure2p 蛋白与哺乳动物朊病毒的结构和功能相似性]
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[New aspects of research upon the yeast Saccharomyces cerevisiae [PSI+] prion].[酿酒酵母[PSI+]朊病毒的研究新进展]
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Prion properties of the Sup35 protein of yeast Pichia methanolica.甲醇毕赤酵母Sup35蛋白的朊病毒特性
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The [URE3] yeast prion: from genetics to biochemistry.[URE3]酵母朊病毒:从遗传学到生物化学
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Emergence and evolution of yeast prion and prion-like proteins.酵母朊病毒和类朊病毒蛋白的出现与进化。
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[PSI] and [URE3] as yeast prions.作为酵母朊病毒的[PSI]和[URE3]
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[Fusion of glutathione S-transferase with the N-terminus of yeast Sup35p protein inhibits its prion-like properties].[谷胱甘肽S-转移酶与酵母Sup35p蛋白N端融合抑制其朊病毒样特性]
Genetika. 1997 May;33(5):610-5.

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