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真核起始因子 6,一种进化上保守的核糖体生物发生和蛋白质翻译的调节剂。

Eukaryotic initiation factor 6, an evolutionarily conserved regulator of ribosome biogenesis and protein translation.

机构信息

Department of Genetics, Harvard Medical School, Boston, MA, USA.

出版信息

Plant Signal Behav. 2011 May;6(5):766-71. doi: 10.4161/psb.6.5.15438. Epub 2011 May 1.

Abstract

We recently identified Receptor for Activated C Kinase 1 (RACK1) as one of the molecular links between abscisic acid (ABA) signaling and its regulation on protein translation. Moreover, we identified Eukaryotic Initiation Factor 6 (eIF6) as an interacting partner of RACK1. Because the interaction between RACK1 and eIF6 in mammalian cells is known to regulate the ribosome assembly step of protein translation initiation, it was hypothesized that the same process of protein translation in Arabidopsis is also regulated by RACK1 and eIF6. In this article, we analyzed the amino acid sequences of eIF6 in different species from different lineages and discovered some intriguing differences in protein phosphorylation sites that may contribute to its action in ribosome assembly and biogenesis. In addition, we discovered that, distinct from non-plant organisms in which eIF6 is encoded by a single gene, all sequenced plant genomes contain two or more copies of eIF6 genes. While one copy of plant eIF6 is expressed ubiquitously and might possess the conserved function in ribosome biogenesis and protein translation, the other copy seems to be only expressed in specific organs and therefore may have gained some new functions. We proposed some important studies that may help us better understand the function of eIF6 in plants.

摘要

我们最近发现激活蛋白激酶 C 受体 1(RACK1)是脱落酸(ABA)信号与其对蛋白质翻译调控之间的分子联系之一。此外,我们还发现真核起始因子 6(eIF6)是 RACK1 的相互作用伙伴。由于哺乳动物细胞中 RACK1 和 eIF6 之间的相互作用已知可调节蛋白质翻译起始的核糖体组装步骤,因此推测拟南芥中的相同蛋白质翻译过程也受到 RACK1 和 eIF6 的调节。在本文中,我们分析了来自不同谱系的不同物种的 eIF6 的氨基酸序列,并发现了一些有趣的蛋白磷酸化位点差异,这些差异可能有助于其在核糖体组装和生物发生中的作用。此外,我们发现与 eIF6 由单个基因编码的非植物生物不同,所有已测序的植物基因组都包含两个或更多个 eIF6 基因的拷贝。虽然植物 eIF6 的一个拷贝普遍表达,并且可能具有在核糖体生物发生和蛋白质翻译中的保守功能,但另一个拷贝似乎仅在特定器官中表达,因此可能获得了一些新功能。我们提出了一些重要的研究,这些研究可能有助于我们更好地理解 eIF6 在植物中的功能。

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