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Translational Regulation via 5′ mRNA Leader Sequences Revealed by Mutational Analysis of the Arabidopsis Translation Initiation Factor Subunit eIF3h

机译:通过拟南芥翻译起始因子亚基eIF3h突变分析揭示5mRNA前导序列的翻译调控。

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摘要

Eukaryotic translation initiation factor 3 (eIF3) consists of core subunits that are conserved from yeast to man as well as less conserved, noncore, subunits with potential regulatory roles. Whereas core subunits tend to be indispensable for cell growth, the roles of the noncore subunits remain poorly understood. We addressed the hypothesis that eIF3 noncore subunits have accessory functions that help to regulate translation initiation, by focusing on the Arabidopsis thaliana eIF3h subunit. Indeed, eIF3h was not essential for general protein translation. However, results from transient expression assays and polysome fractionation indicated that the translation efficiency of specific 5′ mRNA leader sequences was compromised in an eif3h mutant, including the mRNA for the basic domain leucine zipper (bZip) transcription factor ATB2/AtbZip11, translation of which is regulated by sucrose. Among other pleiotropic developmental defects, the eif3h mutant required exogenous sugar to transit from seedling to vegetative development, but it was hypersensitive to elevated levels of exogenous sugars. The ATB2 mRNA was rendered sensitive to the eIF3h level by a series of upstream open reading frames. Moreover, eIF3h could physically interact with subunits of the COP9 signalosome, a protein complex implicated primarily in the regulation of protein ubiquitination, supporting a direct biochemical connection between translation initiation and protein turnover. Together, these data implicate eIF3 in mRNA-associated translation initiation events, such as scanning, start codon recognition, or reinitiation and suggest that poor translation initiation of specific mRNAs contributes to the pleiotropic spectrum of phenotypic defects in the eif3h mutant.
机译:真核翻译起始因子3(eIF3)由从酵母到人保守的核心亚基以及具有潜在调节作用的保守度较低的非核心亚基组成。尽管核心亚基往往是细胞生长必不可少的,但对非核心亚基的作用仍知之甚少。我们通过集中于拟南芥eIF3h亚基,解决了eIF3非核心亚基具有辅助调节翻译起始的辅助功能这一假设。实际上,eIF3h对于一般的蛋白质翻译不是必需的。但是,瞬时表达分析和多核糖体分级分离的结果表明,在eif3h突变体中,特定5'mRNA前导序列的翻译效率受到了影响,包括基本域亮氨酸拉链(bZip)转录因子ATB2 / AtbZip11的mRNA,由蔗糖调节。除其他多效性发育缺陷外,eif3h突变体还需要外源糖从幼苗过渡到营养发育,但对外源糖水平升高非常敏感。一系列上游开放阅读框使ATB2 mRNA对eIF3h水平敏感。此外,eIF3h可以与COP9信号小体的亚基发生物理相互作用,COP9信号小体是一种蛋白质复合物,主要参与蛋白质泛素化的调控,支持翻译起始和蛋白质更新之间的直接生化联系。总之,这些数据将eIF3牵涉到与mRNA相关的翻译起始事件中,例如扫描,起始密码子识别或重新初始化,并表明特定mRNA的翻译起始不当有助于eif3h突变体的表型缺陷的多效性谱。

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