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光响应和转录增强元件调控叶绿体psbD核心启动子。

Light-responsive and transcription-enhancing elements regulate the plastid psbD core promoter.

作者信息

Allison L A, Maliga P

机构信息

Waksman Institute, Rutgers, State University of New Jersey, Piscataway 08855-0759, USA.

出版信息

EMBO J. 1995 Aug 1;14(15):3721-30. doi: 10.1002/j.1460-2075.1995.tb00042.x.

Abstract

The psbD operon of higher plant plastids is regulated transcriptionally through the activity of an upstream light-responsive promoter. To identify promoter elements important for the regulation, portions of the tobacco psbD 5' region were fused to the reporter gene, uidA, and were introduced into the tobacco plastid genome by targeted gene insertion. Examination of uidA mRNA accumulation in dark-adapted and light-treated transplastomic plants revealed that a 107 bp segment of psbD 5' sequence was sufficient to promote light-responsive expression of the reporter gene in vivo. The 107 bp promoter region contains three pairs of short, repeated sequences upstream of the core promoter -10/-35 elements. Deletion of the upstream-most A-rich sequences resulted in a 5-fold decrease in reporter gene mRNA accumulation, but did not affect the light response. Additional removal of the second and third repeated elements further reduced the promoter strength approximately 30-fold and almost eliminated the light-dependent accumulation of uidA transcripts. These data indicate that the architecture of chloroplast promoters is more complex than previously assumed, and may comprise general enhancer and regulatory elements in addition to the core promoter motifs. Transcriptional regulation of psbD may be mediated by the chloroplast proteins which were shown to interact with the repeated sequences.

摘要

高等植物质体的psbD操纵子通过上游光响应启动子的活性进行转录调控。为了鉴定对调控重要的启动子元件,将烟草psbD 5'区域的部分片段与报告基因uidA融合,并通过靶向基因插入导入烟草质体基因组。对黑暗适应和光照处理的转基因质体植物中uidA mRNA积累的检测表明,psbD 5'序列的107 bp片段足以在体内促进报告基因的光响应表达。107 bp的启动子区域在核心启动子-10/-35元件上游包含三对短的重复序列。删除最上游富含A的序列导致报告基因mRNA积累减少5倍,但不影响光响应。进一步去除第二和第三个重复元件进一步降低了启动子强度约30倍,并几乎消除了uidA转录本的光依赖性积累。这些数据表明,叶绿体启动子的结构比以前认为的更复杂,除了核心启动子基序外,可能还包括一般增强子和调控元件。psbD的转录调控可能由与重复序列相互作用的叶绿体蛋白介导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d33/394447/1a362710f7b8/emboj00039-0136-a.jpg

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