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编码质体特异性核糖体蛋白的菠菜rps22基因的顺式作用元件及其表达模式。

Cis-acting elements and expression pattern of the spinach rps22 gene coding for a plastid-specific ribosomal protein.

作者信息

Li Y F, Zhou D X, Clabault G, Bisanz-Seyer C, Mache R

机构信息

Laboratoire de Biologie Moléculaire Végétale, Université Joseph Fourier, Grenoble, France.

出版信息

Plant Mol Biol. 1995 Jul;28(4):595-604. doi: 10.1007/BF00021186.

Abstract

In order to study the regulation of nuclear genes coding for plastid ribosomal proteins, we have analysed the promoter region of spinach rps22 using both in vitro and in vivo approaches. By footprinting analyses, we have identified eight DNA elements interacting with spinach leaf nuclear factors in the 300 bp promoter region upstream of the transcription start site. Among these elements, four are short AT-rich sequences and one is identical to the Hex motif characterized initially in wheat histone genes. In transgenic tobacco plants, the reporter gene coding for the beta-glucuronidase (GUS) directed by a 1.2 kb upstream region of rps22 was expressed in several plant organs, with high levels in leaf mesophyll, embryo cotyledons and root meristematic cells and very low levels in other cell types. Interestingly, when deleted to -295, the promoter, which contained all the foot-printed elements, was still able to confer the same expression pattern, although the activity was relatively lower than with the 1.2 kb promoter. When deleted further to -154, the promoter, from which the AT-rich elements were eliminated, loses its activity almost completely, suggesting that these AT-rich elements are important for the rps22 promoter activity. Altogether, our results show that rps22 gene expression is controlled by specific cis elements not present in other nuclear-encoded plastid ribosomal protein genes studied so far.

摘要

为了研究编码质体核糖体蛋白的核基因的调控机制,我们采用体外和体内方法对菠菜rps22基因的启动子区域进行了分析。通过足迹分析,我们在转录起始位点上游300 bp的启动子区域中鉴定出八个与菠菜叶核因子相互作用的DNA元件。在这些元件中,四个是富含AT的短序列,其中一个与最初在小麦组蛋白基因中发现的Hex基序相同。在转基因烟草植株中,由rps22基因上游1.2 kb区域驱动的编码β-葡萄糖醛酸酶(GUS)的报告基因在多个植物器官中表达,在叶肉、胚子叶和根分生细胞中表达水平较高,而在其他细胞类型中表达水平极低。有趣的是,当缺失至-295时,包含所有足迹元件的启动子仍能赋予相同的表达模式,尽管其活性相对低于1.2 kb启动子。当进一步缺失至-154时,富含AT的元件被去除的启动子几乎完全丧失活性,这表明这些富含AT的元件对rps22启动子活性很重要。总之,我们的结果表明,rps22基因的表达受特定顺式元件的控制,这些元件在迄今为止研究的其他核编码质体核糖体蛋白基因中并不存在。

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