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菠菜叶绿体转录系统中叶绿体转运RNA的生物合成

Biosynthesis of chloroplast transfer RNA in a spinach chloroplast transcription system.

作者信息

Gruissem W, Greenberg B M, Zurawski G, Prescott D M, Hallick R B

出版信息

Cell. 1983 Dec;35(3 Pt 2):815-28. doi: 10.1016/0092-8674(83)90114-9.

Abstract

We have developed a chloroplast in vitro transcription system capable of transcribing tRNA genes (trn) from the spinach and Euglena gracilis chloroplast genomes. The RNA polymerase contained in the chloroplast extract transcribes the spinach chloroplast trnM2, trnV1, and trnl1 loci and the trnV1-trnN1-trnR1-trnL1 cluster in the EcoG fragment of the Euglena chloroplast genome. Restriction enzyme modified templates were used to demonstrate that the tRNA genes are transcribed in vitro. RNA fingerprint analysis confirmed that tRNAMetm, tRNAlle1 and tRNALeu are correctly processed transcripts from the spinach chloroplast trnM2, trnl1, and Euglena trnL1 loci respectively. CCAOH is added to the mature tRNAs in vitro by a 3' nucleotidyl transferase present in the chloroplast extract. Deletion mutants were constructed from the trnM2 locus to evaluate the role of 5' flanking sequences in transcription initiation and processing. DNA sequences between positions -56 to -85 upstream of the trnM2 locus are required for maximal transcription of tRNAMetm, but are not essential for processing. The RNA polymerase involved in chloroplast trn transcription is distinguishable from the RNA polymerase isolated as a DNA-protein complex from spinach chloroplast that is active in rRNA transcription.

摘要

我们开发了一种叶绿体体外转录系统,该系统能够转录来自菠菜和纤细裸藻叶绿体基因组的tRNA基因(trn)。叶绿体提取物中所含的RNA聚合酶可转录菠菜叶绿体的trnM2、trnV1和trnl1基因座,以及纤细裸藻叶绿体基因组EcoG片段中的trnV1-trnN1-trnR1-trnL1簇。使用限制性内切酶修饰的模板来证明tRNA基因在体外被转录。RNA指纹分析证实,tRNAMetm、tRNAlle1和tRNALeu分别是来自菠菜叶绿体trnM2、trnl1和纤细裸藻trnL1基因座的正确加工转录本。叶绿体提取物中存在的3'核苷酸转移酶在体外将CCAOH添加到成熟的tRNA中。从trnM2基因座构建缺失突变体,以评估5'侧翼序列在转录起始和加工中的作用。trnM2基因座上游-56至-85位之间的DNA序列是tRNAMetm最大转录所必需的,但对加工不是必需的。参与叶绿体trn转录的RNA聚合酶与从菠菜叶绿体中分离出的作为DNA-蛋白质复合物且在rRNA转录中具有活性的RNA聚合酶不同。

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