Herdenberger F, Holländer V, Kück U
Lehrstuhl für Allgemeine Botanik, Ruhr-Universität Bochum, Germany.
Nucleic Acids Res. 1994 Aug 11;22(15):2869-75. doi: 10.1093/nar/22.15.2869.
The self-splicing group II intron (rl1) from Scenedesmus obliquus mitochondria together with its 6 bp intron binding site (IBS1) were inserted in the correct and inverse orientation into the chloroplast tscA gene from C.reinhardtii. Precursor RNA derived from the chimeric tscA-rl1 gene can be used to demonstrate in vitro self-splicing of the rl1 intron RNA. Using the particle bombardment technique, the tscA-rl1 construct was transferred into the chloroplast of the unicellular alga Chlamydomonas reinhardtii. We recovered transformants which contain the chimeric tscA-rl1 gene as shown by Southern analysis. Hybridization and PCR analysis of transcripts confirmed that the heterologous intron is correctly spliced in vivo. From sequencing of cDNA clones we conclude that the IBS1 sequence is sufficient for correct splicing of the mitochondrial intron in C. reinhardtii chloroplasts. Using specific probes, we demonstrate by Northern hybridization that the mature RNA, as well as an intron-3' exon intermediate, accumulate in transformants containing the rl1 intron, correctly inserted into the tscA gene. As expected, no RNA splicing at all was observed when the intron had an inverted orientation within the tscA gene. In addition, a mutated intron RNA with an altered 3' terminal nucleotide was tested in vivo. In contrast to similar mutants examined in vitro, this mutated RNA shows accumulated intron and intron-3' exon intermediates, but no ligated exons at all. Our approach should prove useful for elucidating nucleotide residues involved in splicing of organelle introns in vivo.
来自斜生栅藻线粒体的自我剪接II组内含子(rl1)及其6个碱基对的内含子结合位点(IBS1)以正确和反向的方向插入到莱茵衣藻叶绿体tscA基因中。源自嵌合tscA-rl1基因的前体RNA可用于证明rl1内含子RNA的体外自我剪接。利用粒子轰击技术,将tscA-rl1构建体转入单细胞藻类莱茵衣藻的叶绿体中。如Southern分析所示,我们获得了含有嵌合tscA-rl1基因的转化体。转录本的杂交和PCR分析证实,异源内含子在体内能够正确剪接。通过对cDNA克隆的测序,我们得出结论,IBS1序列足以使莱茵衣藻叶绿体中的线粒体内含子正确剪接。使用特异性探针,我们通过Northern杂交证明,成熟RNA以及内含子-3'外显子中间体在含有正确插入tscA基因的rl1内含子的转化体中积累。正如预期的那样,当内含子在tscA基因内呈反向时,未观察到任何RNA剪接。此外,还在体内测试了一种3'末端核苷酸发生改变的突变内含子RNA。与在体外检测的类似突变体不同,这种突变RNA显示出内含子和内含子-3'外显子中间体的积累,但根本没有连接的外显子。我们的方法应有助于阐明体内参与细胞器内含子剪接的核苷酸残基。