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EFL1的缺失导致60 S GTP酶相关rRNA构象的异质性。

Deletion of EFL1 results in heterogeneity of the 60 S GTPase-associated rRNA conformation.

作者信息

Graindorge Jean-Sébastien, Rousselle Jean-Claude, Senger Bruno, Lenormand Pascal, Namane Abdelkader, Lacroute François, Fasiolo Franco

机构信息

UPR no. 9002 du CNRS, Institut de Biologie Moléculaire et Cellulaire du CNRS, 15, rue René Descartes, 67084 Strasbourg Cedex, France.

出版信息

J Mol Biol. 2005 Sep 16;352(2):355-69. doi: 10.1016/j.jmb.2005.07.037.

Abstract

Previous work suggested that the release of the nucleolar Tif6 from nascent 60 S subunits occurs in the cytoplasm and requires the cytoplasmic EF-2-like GTPase, Efl1. To check whether this release involves an rRNA structural rearrangement mediated by Efl1, we analyzed the rRNA conformation of the GTPase center of 80 S ribosomes in three contexts: wild-type, Deltaefl1 and a dominant suppressor R1 of Deltaefl1. This analysis was restricted to domain II and VI of 25 S rRNA. The rRNA analysis of R1 ribosomes allows us to distinguish the effects due to depletion of Efl1 from the resulting nucleolar deficit of Tif6. Efl1 inhibits the EF-2 GTPase activity, suggesting that the two proteins share a similar ribosome-binding site. The 80 S ribosomes from either type failed to show any difference of conformation in the two rRNA domains analyzed. However, the same analysis performed on the pool of free 60 S subunits reveals several rRNA conformational differences between wild-type and Deltaefl1 subunits, whereas that from the suppressor strain is similar to wild-type. This suggests that the nucleolar deficit of Tif6 during assembly of the 60 S preribosomes is responsible for the changes in rRNA conformation observed in Deltaefl1 60 S subunits. We also purified 60 S preribosomes from the three genetic contexts by TAP-tagging Tif6. The protein content of 60 S preribosomes associated with Tif6p in a Deltaefl1 strain are obtained at a lower yield but have, surprisingly, a protein composition that is a priori similar to that of wild-type and the suppressor strain.

摘要

先前的研究表明,核仁中的Tif6从新生的60 S亚基上释放发生在细胞质中,并且需要细胞质中类似EF - 2的GTP酶Efl1。为了检查这种释放是否涉及由Efl1介导的rRNA结构重排,我们在三种情况下分析了80 S核糖体GTP酶中心的rRNA构象:野生型、Deltaefl1和Deltaefl1的显性抑制子R1。该分析仅限于25 S rRNA的结构域II和VI。对R1核糖体的rRNA分析使我们能够区分由于Efl1缺失导致的影响与由此产生的Tif6核仁缺陷。Efl1抑制EF - 2 GTP酶活性,这表明这两种蛋白质共享相似的核糖体结合位点。在分析的两个rRNA结构域中,来自任何一种类型的80 S核糖体均未显示出构象差异。然而,对游离60 S亚基库进行的相同分析揭示了野生型和Deltaefl1亚基之间存在几种rRNA构象差异,而来自抑制菌株的亚基与野生型相似。这表明在60 S前核糖体组装过程中Tif6的核仁缺陷是Deltaefl1 60 S亚基中观察到的rRNA构象变化的原因。我们还通过TAP标记Tif6从三种遗传背景中纯化了60 S前核糖体。在Deltaefl1菌株中与Tif6p相关的60 S前核糖体的蛋白质含量产量较低,但令人惊讶的是,其蛋白质组成与野生型和抑制菌株的蛋白质组成在先验上相似。

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