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体内ASH1信使核糖核酸(mRNA)及绿色荧光蛋白报告颗粒定位所需的结构元件。

Structural elements required for the localization of ASH1 mRNA and of a green fluorescent protein reporter particle in vivo.

作者信息

Chartrand P, Meng X H, Singer R H, Long R M

机构信息

Departments of Anatomy and Structural Biology and Cell Biology, Albert Einstein College of Medicine, 1300 Morris Park Avenue, Bronx, New York 10461, USA.

出版信息

Curr Biol. 1999 Mar 25;9(6):333-6. doi: 10.1016/s0960-9822(99)80144-4.

Abstract

The sorting of the Ash1 protein to the daughter nucleus of Saccharomyces cerevisiae in late anaphase of the budding cycle correlates with the localization of ASH1 mRNA at the bud tip [1] [2]. Although the 3' untranslated region (3' UTR) of ASH1 is sufficient to localize a reporter mRNA, it is not necessary, a result which indicates that other sequences are involved [1]. We report the identification of three additional cis-acting elements in the coding region. Each element alone, when fused to a lacZ reporter gene, was sufficient for the localization of the lacZ mRNA reporter to the bud. A fine-structure analysis of the 3' UTR element showed that its function in mRNA localization did not depend on a specific sequence but on the secondary and tertiary structure of a minimal 118 nucleotide stem-loop. Mutations in the stem-loop that affect the localization of the lacZ mRNA reporter also affected the formation of the localization particles, in living cells, composed of a green fluorescent protein (GFP) complexed with lacZ-ASH1-3' UTR mRNA [3]. A specific stem-loop in the 3' UTR of the ASH1 mRNA is therefore required for both localization and particle formation, suggesting that complex formation is part of the localization mechanism. An analysis on one of the coding-region elements revealed a comparable stem-loop structure with similar functional requirements.

摘要

在出芽周期的后期,酿酒酵母Ash1蛋白向子细胞核的分选与ASH1 mRNA在芽尖的定位相关[1][2]。虽然ASH1的3'非翻译区(3'UTR)足以使报告基因mRNA定位,但并非必需,这一结果表明还有其他序列参与其中[1]。我们报告了在编码区鉴定出另外三个顺式作用元件。单独的每个元件与lacZ报告基因融合后,足以使lacZ mRNA报告基因定位于芽中。对3'UTR元件的精细结构分析表明,其在mRNA定位中的功能不依赖于特定序列,而是依赖于一个最小的118个核苷酸的茎环的二级和三级结构。影响lacZ mRNA报告基因定位的茎环突变也影响了在活细胞中由与lacZ-ASH1-3'UTR mRNA复合的绿色荧光蛋白(GFP)组成的定位颗粒的形成[3]。因此,ASH1 mRNA的3'UTR中的一个特定茎环对于定位和颗粒形成都是必需的,这表明复合物形成是定位机制的一部分。对其中一个编码区元件的分析揭示了一个具有相似功能要求且结构类似的茎环结构。

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