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不同顺式作用元件之间的结构关系对于rbcS最小光调节单元的功能特性至关重要。

Structural relationships between diverse cis-acting elements are critical for the functional properties of a rbcS minimal light regulatory unit.

作者信息

López-Ochoa Luisa, Acevedo-Hernández Gustavo, Martínez-Hernández Aída, Argüello-Astorga Gerardo, Herrera-Estrella Luis

机构信息

Departamento de Ingeniería Genética de Plantas, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional - Unidad Irapuato, Apartado Postal 629, Irapuato, Guanajuato 36500, Mexico.

出版信息

J Exp Bot. 2007;58(15-16):4397-406. doi: 10.1093/jxb/erm307.

Abstract

Light-regulation of photosynthesis-associated nuclear genes is mediated by multipartite cis-regulatory units located in their promoter regions. The combination, spacing, and relative orientation of transcription factor binding sites in these units influences the assembly of specific multiprotein complexes that control gene expression. In this work, the functional architecture of the conserved modular array 5 (CMA5), a previously characterized minimal light-regulatory unit of rbcS gene promoters, has been analysed. With the aim of defining the sequences of CMA5 that, besides the I- and G-box elements, are essential for CMA5 responsiveness to light and chloroplast-derived signals, a series of mutations affecting the sequences flanking these elements was performed. It was found that an I-box associated module, named IbAM5, is essential for CMA5 functionality and is able to bind nuclear proteins in vitro. The spacing requirements of the I- and G-box elements in achieving adequate combinatorial interaction were also studied as well as the effect of interchanging the relative position of these elements in the native rbcS promoter arrangement. The results show that helical phasing and distance between the I- and G-box motifs are critical to determine the functionality and transcriptional strength of CMA5. Furthermore, it is shown that the relative position of the IbAM5/I-box composite element and the G-box element is not critical for the enhancer activity of CMA5, as long as the proper distance between them is maintained. Taken together, these results suggest that the light-responsive, plastid-dependent activity of CMA5 requires the synergistic interaction of several DNA-binding transcription factors assembled in a higher-order nucleoprotein complex.

摘要

光合作用相关核基因的光调节由位于其启动子区域的多部分顺式调节单元介导。这些单元中转录因子结合位点的组合、间距和相对方向影响控制基因表达的特定多蛋白复合物的组装。在这项工作中,分析了保守模块化阵列5(CMA5)的功能结构,CMA5是之前已表征的rbcS基因启动子的最小光调节单元。为了确定CMA5中除I盒和G盒元件外对光和叶绿体衍生信号有响应所必需的序列,对影响这些元件侧翼序列进行了一系列突变。发现一个与I盒相关的模块,命名为IbAM5,对CMA5功能至关重要,并且能够在体外结合核蛋白。还研究了I盒和G盒元件在实现适当组合相互作用时的间距要求,以及在天然rbcS启动子排列中互换这些元件相对位置的影响。结果表明,I盒和G盒基序之间的螺旋相位和距离对于确定CMA5的功能和转录强度至关重要。此外,结果表明,只要保持它们之间的适当距离,IbAM5/I盒复合元件和G盒元件的相对位置对CMA5的增强子活性并不关键。综上所述,这些结果表明,CMA5的光响应、质体依赖性活性需要在高阶核蛋白复合物中组装的几种DNA结合转录因子的协同相互作用。

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