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首页> 外文期刊>Current Genetics: Eukaryotes with Emphasis on Yeasts, Fungi, Mitochondria, Plastids >Genetic interactions of a putative Arabidopsis thaliana ubiquitin-ligase with components of the Saccharomyces cerevisiae ubiquitination machinery.
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Genetic interactions of a putative Arabidopsis thaliana ubiquitin-ligase with components of the Saccharomyces cerevisiae ubiquitination machinery.

机译:拟南芥拟南芥泛素连接酶与酿酒酵母泛素化机制的成分之间的遗传相互作用。

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The feasibility of using the Saccharomyces cerevisiae genetic tools to get insights into the function of a plant-specific ubiquitin-ligase was examined. ATL2 is a potential ubiquitin-ligase of the RING-H2 type that was originally isolated as a conditionally toxic Arabidopsis cDNA when overexpressed in yeast. ATL2 is a member of an Arabidopsis family that comprises 80 proteins. After testing cDNAs from 25 ATL members for toxicity we found that in addition to ATL2 only ATL63 was toxic, suggesting specific interactions of each one of these two ATLs in yeast. We seek to identify suppressors of the ATL2 toxicity in yeast and we found that toxicity was suppressed by knock-out mutations on different components of the ubiquitination pathway. Suppression was achieved in four deubiquitinating enzyme mutants and in one ubiquitin-conjugating enzyme mutant. A model is proposed in which Ubc4 and ATL2 act together to target for degradation one or more essential yeast proteins, Doa4/Ubp4, Ubp6 and Ubp14 have a role indisassembling ubiquitin chains on the target proteins and Ubp15 protects ATL2 from auto-ubiquitination. We presuppose that our approach can be further utilized to analyze the function of this distinctive class of ubiquitin-ligases in yeast as well as in Arabidopsis.
机译:考察了使用酿酒酵母遗传工具来了解植物特异性泛素连接酶功能的可行性。 ATL2是一种潜在的RING-H2型泛素连接酶,最初在酵母中过表达时最初作为条件毒性的拟南芥cDNA分离出来。 ATL2是包含80种蛋白质的拟南芥家族的成员。在测试了25个ATL成员的cDNA的毒性后,我们发现除了ATL2之外,只有ATL63是有毒的,这表明酵母中这两个ATL中的每一个都有特定的相互作用。我们寻求鉴定酵母中ATL2毒性的抑制剂,并且我们发现泛素化途径的不同组成部分上的敲除突变抑制了毒性。在四个去泛素化酶突变体和一个泛素结合酶突变体中实现了抑制。提出了一个模型,其中Ubc4和ATL2共同作用以靶向降解一种或多种必需酵母蛋白,Doa4 / Ubp4,Ubp6和Ubp14在目标蛋白上的泛素链上具有分解作用,而Ubp15保护ATL2免于自身泛素化。我们假设可以进一步利用我们的方法来分析这种独特类型的泛素连接酶在酵母以及拟南芥中的功能。

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