Ray Anirban, Bandyopadhyay Amitabha, Matsumoto Tomohiro, Deng Haiteng, Maitra Umadas
Department of Developmental and Molecular Biology, Albert Einstein College of Medicine of Yeshiva University, Bronx, New York, NY 10461, USA.
Yeast. 2008 Nov;25(11):809-23. doi: 10.1002/yea.1635.
The fission yeast Schizosaccharomyces pombe homologue of the p40/eIF3h subunit of mammalian translation initiation factor eIF3 has been characterized in this study. We show that this protein physically associates with the 40S ribosomal particles as a constituent of the multimeric eIF3 protein complex, which consists of all five known eIF3 core subunits (eIF3a, eIF3b, eIF3c, eIF3g and eIF3i) as well as the five non-core subunits (eIF3d, eIF3e, eIF3f, eIF3h and eIF3m) that constitute an eIF3 holocomplex in fission yeast. However, affinity purification of eIF3 from fission yeast cells expressing TAP-tagged eIF3h suggests the presence of distinct forms of eIF3 that differ in their composition of the non-core subunits. Further characterization of eIF3h shows that strains lacking eif3h(+) (eif3hDelta) are viable and show no gross defects, either in vegetative growth or in the rate of in vivo protein synthesis. Polysome profile analysis shows no apparent defects in translation initiation. Furthermore, deletion of eif3h(+) does not affect the ability of the other eIF3 subunits to remain associated with one another in a tight protein complex similar to the situation in wild-type cells. Additionally, we show that human eIF3h can functionally substitute fission yeast eIF3h in complementing in vivo a genetic deletion of eif3h(+). Interestingly, mutant eif3hDelta cells show several prominent phenotypic properties. They are hypersensitive to caffeine and highly defective in meiosis, producing either no spores or incomplete tetrads with a very high frequency. The implications of these results in relation to the functions of eIF3h in Sz. pombe are discussed.
本研究对哺乳动物翻译起始因子eIF3的p40/eIF3h亚基在裂殖酵母粟酒裂殖酵母中的同源物进行了表征。我们发现,该蛋白作为多聚体eIF3蛋白复合物的一个组成部分,与40S核糖体颗粒发生物理结合,该复合物由所有五个已知的eIF3核心亚基(eIF3a、eIF3b、eIF3c、eIF3g和eIF3i)以及五个非核心亚基(eIF3d、eIF3e、eIF3f、eIF3h和eIF3m)组成,这些亚基在裂殖酵母中构成一个eIF3全复合物。然而,从表达TAP标签的eIF3h的裂殖酵母细胞中亲和纯化eIF3表明,存在不同形式的eIF3,它们在非核心亚基的组成上有所不同。对eIF3h的进一步表征表明,缺乏eif3h(+)(eif3hDelta)的菌株是有活力的,并且在营养生长或体内蛋白质合成速率方面均未表现出明显缺陷。多核糖体图谱分析表明翻译起始没有明显缺陷。此外,删除eif3h(+)并不影响其他eIF3亚基在类似于野生型细胞的紧密蛋白复合物中彼此保持结合的能力。此外,我们表明,人eIF3h在体内能够功能性替代裂殖酵母eIF3h,以补充eif3h(+)的基因缺失。有趣的是,突变的eif3hDelta细胞表现出几个显著的表型特征。它们对咖啡因高度敏感,在减数分裂中存在严重缺陷,极高频地产生无孢子或不完全四分体。讨论了这些结果与粟酒裂殖酵母中eIF3h功能的相关性。