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小鼠核糖体蛋白L7基因。其一级结构及启动子区域的功能分析。

The mouse ribosomal protein L7 gene. Its primary structure and functional analysis of the promoter region.

作者信息

Meyuhas O, Klein A

机构信息

Department of Developmental Biochemistry, Hebrew University-Hadassah Medical School, Jerusalem, Israel.

出版信息

J Biol Chem. 1990 Jul 15;265(20):11465-73.

PMID:2365680
Abstract

The expressed gene coding for mouse ribosomal protein L7 (rpL7) was structurally and functionally characterized. It consists of seven exons, spans 3107 base pairs, and its coding sequence initiates within exon 1. The primary structure of mouse rpL7 (270 amino acids), as inferred from the nucleotide sequence of the exons of the gene, and from the cDNA, is 12 residues longer than the rat counterpart. The rpL7 gene shares common structural features with most other mammalian ribosomal protein genes analyzed thus far. These include the lack of a canonical TATA box and a major transcription initiation site at a cytidine residue embedded in a stretch of 14 pyrimidines, flanked by C + G-rich regions. Transient expression assays revealed that the promoter region of rpL7 gene bears several regulatory elements, both upstream to the capsite and within the transcribed portion of the gene. One internal regulatory element was assigned to the first intron and a second one to a 20-base pair region spanning the first exon-intron junction. The activity of a deletion mutant of rpL32 gene, lacking its internal elements can be rescued by insertion, in the sense orientation, of the corresponding elements from the rpL7 gene. The unique spatial organization of the regulatory elements in rpL7 gene, as well as in other murine ribosomal protein genes examined thus far, might indicate that this common architecture is involved in the mechanism coordinating their expression.

摘要

对编码小鼠核糖体蛋白L7(rpL7)的表达基因进行了结构和功能表征。它由七个外显子组成,跨度为3107个碱基对,其编码序列在外显子1内起始。从小鼠rpL7基因外显子的核苷酸序列以及cDNA推断出的小鼠rpL7的一级结构(270个氨基酸)比大鼠对应物长12个残基。rpL7基因与迄今为止分析的大多数其他哺乳动物核糖体蛋白基因具有共同的结构特征。这些特征包括缺乏典型的TATA盒以及在一段14个嘧啶的胞嘧啶残基处的主要转录起始位点,两侧是富含C + G的区域。瞬时表达分析表明,rpL7基因的启动子区域在帽位点上游和基因转录部分内都带有几个调控元件。一个内部调控元件位于第一个内含子中,另一个位于跨越第一个外显子-内含子交界处的20个碱基对区域。缺乏内部元件的rpL32基因缺失突变体的活性可以通过以正义方向插入rpL7基因的相应元件来挽救。rpL7基因以及迄今为止检测的其他小鼠核糖体蛋白基因中调控元件的独特空间组织可能表明这种共同的结构参与了协调它们表达的机制。

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