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无TATA盒的RPL21基因起始元件的结构与转录活性

Architecture and transcriptional activity of the initiator element of the TATA-less RPL21 gene.

作者信息

Achard Patrick, Lagrange Thierry, El-Zanaty Abdel-Fattah, Mache Régis

机构信息

University J. Fourier and Centre National de la Recherche scientifique, BP 53, 38041 Grenoble, France.

出版信息

Plant J. 2003 Sep;35(6):743-52. doi: 10.1046/j.1365-313x.2003.01843.x.

Abstract

The nuclear RPL21 gene coding for the plastid ribosomal protein L21 is a TATA-less gene that is overexpressed in a leaf-dependent manner by the specific usage of a strong initiator called P1. We have previously shown that the RPL21 core promoter spanning from -23 to +104 relative to P1 start site activates transcription in the same manner as does the full promoter. Here, we present results of experiments aimed at deciphering the RPL21 core promoter architecture. Results of transient expression using various 5' deletions of the core promoter fused to a chloramphenicol acetyl transferase (CAT) reporter gene show that 34 bp encompassing the P1 initiation site (from -23 to +11) are required for full transcription activation. Gel-shift analysis shows that five DNA/protein complexes (C1-C5) are formed on this 34-bp fragment with protein extracts from green tissues. C1 is the major complex present during seed germination. The other complexes are present in young leaf tissues suggesting a role in transcription activation. Linker scanning mutagenesis experiments show that the five complexes form two independent groups: I (C1-C3) and II (C4 and C5), with a common binding site located on P1. Using transgenic plants, we show that three nucleotides encompassing the P1 start site and three trinucleotides necessary for group I binding are determinant for RPL21 activation. These results identify an unusually compact core structure, which is centred on P1 initiation site and is responsible for transcription activation. A model of the architecture of this region is presented.

摘要

编码质体核糖体蛋白L21的核RPL21基因是一个无TATA盒的基因,它通过使用一个名为P1的强起始子以叶依赖的方式过表达。我们之前已经表明,相对于P1起始位点,跨度从-23到+104的RPL21核心启动子以与完整启动子相同的方式激活转录。在这里,我们展示了旨在解析RPL21核心启动子结构的实验结果。使用与氯霉素乙酰转移酶(CAT)报告基因融合的核心启动子的各种5'缺失进行瞬时表达的结果表明,包含P1起始位点(从-23到+11)的34 bp对于完全转录激活是必需的。凝胶迁移分析表明,在这个34 bp片段上与绿色组织的蛋白质提取物形成了五个DNA/蛋白质复合物(C1-C5)。C1是种子萌发期间存在的主要复合物。其他复合物存在于幼叶组织中,表明在转录激活中起作用。接头扫描诱变实验表明,这五个复合物形成两个独立的组:I(C1-C3)和II(C4和C5),在P1上有一个共同的结合位点。使用转基因植物,我们表明包含P1起始位点的三个核苷酸和I组结合所需的三个三核苷酸对于RPL21激活是决定性的。这些结果确定了一个异常紧凑的核心结构,它以P1起始位点为中心,负责转录激活。本文提出了该区域结构的模型。

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