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Sum1, a component of the fission yeast eIF3 translation initiation complex, is rapidly relocalized during environmental stress and interacts with components of the 26S proteasome.

机译:Sum1是裂变酵母eIF3翻译起始复合体的组成部分,在环境压力下会迅速重新定位,并与26S蛋白酶体的组成部分相互作用。

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摘要

Eukaryotic translation initiation factor 3 (eIF3) is a multisubunit complex that plays a central role in translation initiation. We show that fission yeast Sum1, which is structurally related to known eIF3 subunits in other species, is essential for translation initiation, whereas its overexpression results in reduced global translation. Sum1 is associated with the 40S ribosome and interacts stably with Int6, an eIF3 component, in vivo, suggesting that Sum1 is a component of the eIF3 complex. Sum1 is cytoplasmic under normal growth conditions. Surprisingly, Sum1 is rapidly relocalized to cytoplasmic foci after osmotic and thermal stress. Int6 and p116, another putative eIF3 subunit, behave similarly, suggesting that eIF3 is a dynamic complex. These cytoplasmic foci, which additionally comprise eIF4E and RNA components, may function as translation centers during environmental stress. After heat shock, Sum1 additionally colocalizes stably with the 26S proteasome at the nuclear periphery. The relationship between Sum1 and the 26S proteasome was further investigated, and we find cytoplasmic Sum1 localization to be dependent on the 26S proteasome. Furthermore, Sum1 interacts with the Mts2 and Mts4 components of the 26S proteasome. These data indicate a functional link between components of the structurally related eIF3 translation initiation and 26S proteasome complexes.
机译:真核翻译起始因子3(eIF3)是一个多亚基复合体,在翻译起始中起着核心作用。我们显示裂变酵母Sum1,与其他物种中的已知eIF3亚基在结构上相关,对于翻译启动来说是必不可少的,而其过度表达会导致整体翻译减少。 Sum1与40S核糖体相关,并在体内与Int6(一种eIF3组分)稳定相互作用,表明Sum1是eIF3复合物的组分。 Sum1在正常生长条件下具有细胞质。令人惊讶的是,Sum1在渗透和热应激后迅速重新定位到细胞质灶。 Int6和p116是另一个假定的eIF3亚基,其行为相似,表明eIF3是动态复合体。这些细胞质灶还包含eIF4E和RNA成分,在环境压力下可能充当翻译中心。热冲击后,Sum1还与26S蛋白酶体在核外围稳定定位。 Sum1和26S蛋白酶体之间的关系进行了进一步的研究,我们发现细胞质Sum1定位取决于26S蛋白酶体。此外,Sum1与26S蛋白酶体的Mts2和Mts4组件相互作用。这些数据表明结构相关的eIF3翻译起始成分和26S蛋白酶体复合物之间的功能联系。

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