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Studies on regulatory roles of the translation initiation factor 3 subunits E and H in Arabidopsis.

机译:研究翻译起始因子3亚基E和H在拟南芥中的调控作用。

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摘要

The three protein complexes known as the PCI complexes (19S P&barbelow;roteasome lid, C&barbelow;OP9 signalosome (CSN), eukaryotic translation I&barbelow;nitiation factor 3) play important roles at the protein synthesis and degradation stages of gene expression. The PCI complexes are defined on the basis of sequence similarities between their paralogous subunits. Interestingly, biochemical interactions have been reported between all three PCI complexes but the physiological significance of those interactions is poorly understood. Two subunits of eIF3, eIF3e and eIF3h, were confirmed to interact with both eIF3 and the CSN. This study was conducted to define the roles of eIF3e and eIF3h in the regulation of translation during Arabidopsis development and to suggest further testable hypotheses regarding the interaction between eIF3 and the CSN. To this end, two T-DNA insertion mutants of the eIF3h gene were isolated and characterized morphologically and biochemically. The eif3h mutant produced pleiotropic developmental defects including delayed growth, reduced meristem activities, and malformed organs. The eif3h mutants share certain phenotypic characteristics with the can mutants, including hypersensitivity to exogenous sucrose, reduced elongation of hypocotyls and partial opening of cotyledons in the dark condition, suggesting their participation in common developmental pathways. A regulatory role of the eIF3h subunit of eIF3 was suggested given that the eif3h mutation did not affect the overall efficiency of translation but differentially regulates translation of a subset of mRNAs such as those of the transcription factors ATB2 and HY5. Concerning the eIF3e subunit, data presented suggest a tissue type specific nucleocytoplasmic distribution of eIF3e. In light of nuclear localization and nuclear export signals present in eIF3e, these results suggest that a dynamic nucleocytoplasmic transport mechanism may mediate a regulatory role of eIF3e during translation. Reverse genetic approaches targeted to eIF3e demonstrated a role of eIF3e during the transition between cell division and differentiation phases of Arabidopsis development. Therefore it is shown that translational control by regulatory subunits of eIF3 participates in the modulation of protein synthesis in order to control development in Arabidopsis. The data further suggest a new type of functional crosstalk between the machineries of translation (eIF3) and protein turnover (CSN) in Arabidopsis.
机译:三种称为PCI复合物的蛋白质复合物(19S Probarsome盖,C9 OP9信号小体(CSN),真核翻译I和NIF 3)在蛋白质合成和基因表达的降解阶段起着重要作用。 PCI复合物是根据其同源亚基之间的序列相似性定义的。有趣的是,已经报道了所有三种PCI复合物之间的生化相互作用,但人们对这些相互作用的生理学意义了解甚少。确认eIF3的两个亚基eIF3e和eIF3h与eIF3和CSN相互作用。这项研究的目的是确定eIF3e和eIF3h在拟南芥发育过程中对翻译的调控中的作用,并提出关于eIF3与CSN之间相互作用的进一步可验证假设。为此,分离了两个 eIF3h 基因的T-DNA插入突变体,并对其形态和生化特性进行了表征。 eif3h 突变体产生多效性发育缺陷,包括生长延迟,分生组织活动减少和器官畸形。 eif3h 突变体与can突变体具有某些表型特征,包括对外源蔗糖的超敏性,下胚轴伸长率的降低和子叶在黑暗条件下的部分开放,表明它们参与了常见的发育途径。考虑到 eif3h 突变不影响翻译的整体效率,但差异调节mRNA的一个子集的翻译,如转录因子ATB2和HY5的翻译,因此建议eIF3h的eIF3h亚基具有调节作用。 。关于eIF3e亚基,提供的数据表明eIF3e的组织类型特异性核质分布。根据eIF3e中存在的核定位和核输出信号,这些结果表明,动态核质转运机制可能在翻译过程中介导eIF3e的调节作用。针对eIF3e的反向遗传学方法证明了eIF3e在拟南芥发育的细胞分裂和分化阶段之间的过渡过程中发挥了作用。因此表明,eIF3调节亚基的翻译控制参与蛋白质合成的调控,以控制拟南芥的发育。数据进一步表明拟南芥中的翻译机制(eIF3)和蛋白质更新(CSN)之间存在一种新型的功能串扰。

著录项

  • 作者

    Kim, Tae-Houn.;

  • 作者单位

    The University of Tennessee.;

  • 授予单位 The University of Tennessee.;
  • 学科 Biology Genetics.; Biology Cell.; Biology Molecular.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 121 p.
  • 总页数 121
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 遗传学;细胞生物学;分子遗传学;
  • 关键词

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