Schein Aleks, Sheffy-Levin Sharon, Glaser Fabian, Schuster Gadi
Department of Biology, Technion-Israel Institute of Technology, Haifa 32000, Israel.
RNA. 2008 Jun;14(6):1057-68. doi: 10.1261/rna.907608. Epub 2008 Apr 25.
RNase E is an endoribonuclease that has been studied primarily in Escherichia coli, where it is prominently involved in the processing and degradation of RNA. Homologs of bacterial RNase E are encoded in the nuclear genome of higher plants. RNA degradation in the chloroplast, an organelle that originated from a prokaryote similar to cyanobacteria, occurs via the polyadenylation-assisted degradation pathway. In E. coli, this process is probably initiated with the removal of 5'-end phosphates followed by endonucleolytic cleavage by RNase E. The plant homolog has been proposed to function in a similar way in the chloroplast. Here we show that RNase E of Arabidopsis is located in the soluble fraction of the chloroplast as a high molecular weight complex. In order to characterize its endonucleolytic activity, Arabidopsis RNase E was expressed in bacteria and analyzed. Similar to its E. coli counterpart, the endonucleolytic activity of the Arabidopsis enzyme depends on the number of phosphates at the 5' end, is inhibited by structured RNA, and preferentially cleaves A/U-rich sequences. The enzyme forms an oligomeric complex of approximately 680 kDa. The chloroplast localization and the similarity in the two enzymes' characteristics suggest that plant RNase E participates in the initial endonucleolytic cleavage of the polyadenylation-stimulated RNA degradation process in the chloroplast, perhaps in collaboration with the two other chloroplast endonucleases, RNase J and CSP41.
核糖核酸酶E是一种内切核糖核酸酶,主要在大肠杆菌中进行了研究,在大肠杆菌中它主要参与RNA的加工和降解。细菌核糖核酸酶E的同源物在高等植物的核基因组中编码。叶绿体是一种起源于类似于蓝细菌的原核生物的细胞器,其RNA降解通过多聚腺苷酸化辅助降解途径发生。在大肠杆菌中,这个过程可能始于5'-末端磷酸基团的去除,随后由核糖核酸酶E进行内切核酸酶切割。有人提出植物同源物在叶绿体中以类似的方式发挥作用。在这里,我们表明拟南芥的核糖核酸酶E作为一种高分子量复合物位于叶绿体的可溶性部分。为了表征其内切核酸酶活性,在细菌中表达并分析了拟南芥核糖核酸酶E。与其大肠杆菌对应物相似,拟南芥酶的内切核酸酶活性取决于5'末端的磷酸基团数量,受到结构化RNA的抑制,并优先切割富含A/U的序列。该酶形成了一个约680 kDa的寡聚复合物。叶绿体定位以及两种酶特性的相似性表明,植物核糖核酸酶E参与了叶绿体中多聚腺苷酸化刺激的RNA降解过程的初始内切核酸酶切割,可能与另外两种叶绿体内切核酸酶核糖核酸酶J和CSP41协同作用。