Hegeman Carla E, Hayes Michael L, Hanson Maureen R
Department of Molecular Biology and Genetics, Cornell University, Biotechnology Building, Ithaca, NY 14853, USA.
Plant J. 2005 Apr;42(1):124-32. doi: 10.1111/j.1365-313X.2005.02360.x.
None of the macromolecular components of the chloroplast RNA editing apparatus has yet been identified. In order to facilitate biochemical purification and characterization of the chloroplast RNA editing apparatus, we have identified conditions suitable for production of chloroplast extracts from the model plant Arabidopsis that are capable of editing exogenous substrates produced by in vitro transcription. A simple poisoned primer extension assay readily quantified editing extent of mutated and wild-type substrates. Maximum editing efficiency typically varied from 10 to 40% with different chloroplast preparations. Substrates carrying as little as 47 nt surrounding the psbE editing site were as efficiently edited as longer substrates. Editing activity was stimulated when either ATP, CTP, or dCTP was provided to the extract, an unusual observation also recently seen with plant mitochondrial editing extracts. Editing was sensitive to a zinc chelator, also a characteristic of the mammalian APOBEC editing enzyme, which is a zinc-dependent cytidine deaminase.
叶绿体RNA编辑装置的任何大分子成分都尚未被鉴定出来。为了便于对叶绿体RNA编辑装置进行生化纯化和表征,我们已经确定了适合从模式植物拟南芥中制备叶绿体提取物的条件,这些提取物能够编辑通过体外转录产生的外源底物。一种简单的中毒引物延伸测定法可以很容易地量化突变型和野生型底物的编辑程度。不同的叶绿体提取物中,最大编辑效率通常在10%到40%之间变化。围绕psbE编辑位点携带仅47个核苷酸的底物与较长的底物一样能被高效编辑。当向提取物中提供ATP、CTP或dCTP时,编辑活性会受到刺激,这一不寻常的现象最近在植物线粒体编辑提取物中也有发现。编辑对锌螯合剂敏感,这也是哺乳动物APOBEC编辑酶的一个特征,APOBEC编辑酶是一种锌依赖性胞苷脱氨酶。