Watkins Kenneth P, Kroeger Tiffany S, Cooke Amy M, Williams-Carrier Rosalind E, Friso Giulia, Belcher Susan E, van Wijk Klaas J, Barkan Alice
Institute of Molecular Biology, University of Oregon, Eugene, Oregon 97403, USA.
Plant Cell. 2007 Aug;19(8):2606-23. doi: 10.1105/tpc.107.053736. Epub 2007 Aug 10.
Chloroplast genomes in land plants harbor approximately 20 group II introns. Genetic approaches have identified proteins involved in the splicing of many of these introns, but the proteins identified to date cannot account for the large size of intron ribonucleoprotein complexes and are not sufficient to reconstitute splicing in vitro. Here, we describe an additional protein that promotes chloroplast group II intron splicing in vivo. This protein, RNC1, was identified by mass spectrometry analysis of maize (Zea mays) proteins that coimmunoprecipitate with two previously identified chloroplast splicing factors, CAF1 and CAF2. RNC1 is a plant-specific protein that contains two ribonuclease III (RNase III) domains, the domain that harbors the active site of RNase III and Dicer enzymes. However, several amino acids that are essential for catalysis by RNase III and Dicer are missing from the RNase III domains in RNC1. RNC1 is found in complexes with a subset of chloroplast group II introns that includes but is not limited to CAF1- and CAF2-dependent introns. The splicing of many of the introns with which it associates is disrupted in maize rnc1 insertion mutants, indicating that RNC1 facilitates splicing in vivo. Recombinant RNC1 binds both single-stranded and double-stranded RNA with no discernible sequence specificity and lacks endonuclease activity. These results suggest that RNC1 is recruited to specific introns via protein-protein interactions and that its role in splicing involves RNA binding but not RNA cleavage activity.
陆地植物的叶绿体基因组含有大约20个II类内含子。遗传学方法已鉴定出参与其中许多内含子剪接的蛋白质,但迄今为止鉴定出的蛋白质无法解释内含子核糖核蛋白复合体的大尺寸,也不足以在体外重建剪接过程。在此,我们描述了一种在体内促进叶绿体II类内含子剪接的额外蛋白质。这种蛋白质RNC1是通过对与两种先前鉴定的叶绿体剪接因子CAF1和CAF2共免疫沉淀的玉米(Zea mays)蛋白质进行质谱分析鉴定出来的。RNC1是一种植物特异性蛋白质,含有两个核糖核酸酶III(RNase III)结构域,即包含RNase III和Dicer酶活性位点的结构域。然而,RNC1的RNase III结构域中缺少几个对RNase III和Dicer催化至关重要的氨基酸。RNC1存在于与一部分叶绿体II类内含子形成的复合体中,这些内含子包括但不限于依赖CAF1和CAF2的内含子。在玉米rnc1插入突变体中,许多与其相关的内含子的剪接被破坏,这表明RNC1在体内促进剪接。重组RNC1以无明显序列特异性的方式结合单链和双链RNA,并且缺乏内切核酸酶活性。这些结果表明,RNC1通过蛋白质-蛋白质相互作用被招募到特定内含子上,并且其在剪接中的作用涉及RNA结合而非RNA切割活性。