首页> 外文期刊>Nucleic Acids Research >MRNA DECAY IN SPINACH CHLOROPLASTS - PSBA MRNA DEGRADATION IS INITIATED BY ENDONUCLEOLYTIC CLEAVAGES WITHIN THE CODING REGION
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MRNA DECAY IN SPINACH CHLOROPLASTS - PSBA MRNA DEGRADATION IS INITIATED BY ENDONUCLEOLYTIC CLEAVAGES WITHIN THE CODING REGION

机译:菠菜叶绿体中的MRNA衰变-PSBA MRNA的降解是由编码区域内的核酸裂解引起的

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摘要

The expression of chloroplast genes during leaf development in higher plants is regulated on several levels as transcription, RNA processing and stability, protein stability and turnover. Differential mRNA stability is one major component which contributes to the developmentally controlled accumulation of higher plant chloroplast psbA mRNA, which encodes the D1 protein of photosystem II. To understand the molecular mechanisms of specific mRNA degradation an in vitro mRNA decay system based on lysed chloroplasts from spinach leaves was established. Employing this degradation extract the decay of psbA mRNA was analyzed. Half-life of the psbA mRNA in vitro is dependent on the degradation conditions as the presence of Mg2+, which was found to stabilize the mRNA. Addition of tRNA stabilizes the mRNA and allows the accumulation of distinct degradation intermediates. psbA mRNA derived fragments of the same size were detected in degradation experiments in vitro, in organello and in vivo. 5' ends of the degradation intermediates were identified by primer extension and found to be localized in the 5' part of the coding region. The data indicate a degradation mechanism involving initiation of psbA mRNA decay by specific endonucleolytic cleavage and subsequent exonucleolytic degradation of the fragments. Possible models for cleavage site recognition are discussed.
机译:高等植物叶片发育过程中叶绿体基因的表达受转录,RNA加工和稳定性,蛋白质稳定性和周转率等几个方面的调节。差异性的mRNA稳定性是导致高等植物叶绿体psbA mRNA发育受控制的积累的主要成分之一,后者编码光系统II的D1蛋白。为了了解特定mRNA降解的分子机制,建立了基于菠菜叶裂解叶绿体的体外mRNA降解系统。利用这种降解提取物分析了psbA mRNA的衰减。 psbA mRNA在体外的半衰期取决于降解条件,因为存在Mg2 +,可以稳定mRNA。添加tRNA可以稳定mRNA,并可以积累不同的降解中间体。在体外,器官和体内的降解实验中检测到了相同大小的psbA mRNA衍生片段。通过引物延伸鉴定降解中间体的5'末端,发现其位于编码区的5'部分。数据表明了降解机制,该机制涉及通过特异性的核酸内切酶裂解引发psbA mRNA降解,随后进行核酸外切。讨论了裂解位点识别的可能模型。

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