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人类和酵母翻译起始因子EIF3结构的保守性与多样性

Conservation and diversity in the structure of translation initiation factor EIF3 from humans and yeast.

作者信息

Hershey J W, Asano K, Naranda T, Vornlocher H P, Hanachi P, Merrick W C

机构信息

Department of Biological Chemistry, School of Medicine, University of California, Davis, CA 95616, USA.

出版信息

Biochimie. 1996;78(11-12):903-7. doi: 10.1016/s0300-9084(97)86711-9.

Abstract

Initiation factor eIF3 plays a central role in the initiation pathway, influencing ribosome association, ternary complex binding to 40S subunits, and mRNA binding, in part through an interaction with eIF4F. We are attempting to clone and sequence DNAs encoding the subunits of this complex factor. Mammalian eIF3 comprises 10 subunits; full-length human cDNAs have been cloned for eight of these, and partial clones are in hand for the remaining two. Yeast eIF3 comprises at least seven subunits, with six of the seven genes identified and sequenced. Comparison of eIF3 subunit sequences between human and yeast reveals an unexpectedly large diversity of structure. Surprisingly, comparisons with other sequences in the data base suggest that some of the eIF3 subunits may have functions apart from the eIF3 complex. Work is in progress to use the cloned DNAs as tools for elucidating the structure of eIF3 and its interactions with other initiation factors.

摘要

起始因子eIF3在起始途径中起核心作用,部分通过与eIF4F相互作用,影响核糖体结合、三元复合物与40S亚基的结合以及mRNA结合。我们正试图克隆并测序编码这种复合因子亚基的DNA。哺乳动物eIF3由10个亚基组成;其中8个亚基的全长人类cDNA已被克隆,其余2个亚基的部分克隆也已到手。酵母eIF3至少由7个亚基组成,7个基因中的6个已被鉴定和测序。人类和酵母之间eIF3亚基序列的比较揭示了意想不到的结构多样性。令人惊讶的是,与数据库中其他序列的比较表明,一些eIF3亚基可能具有除eIF3复合物之外的功能。目前正在开展工作,利用克隆的DNA作为工具来阐明eIF3的结构及其与其他起始因子的相互作用。

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