Although seven proteins unique to U12 intron-specific minor spliceosomes, denoted as U11/U12-65K, -59K, -48K, -35K, -31K, -25K, and -20K, have been identified in humans and the roles of some of them have been demonstrated, the functional role of most of these proteins in plants is not understood. A recent study demonstrated that Arabidopsis U11/U12-65K is essential for U12 intron splicing and normal plant development. However, the structural features and sequence motifs important for 65Â K binding to U12 snRNA and other spliceosomal proteins remain unclear. Here, we demonstrated by domain-deletion analysis that the C-terminal region of the 65Â K protein bound specifically to the stem-loop III of U12 snRNA, whereas the N-terminal region of the 65Â K protein was responsible for interacting with the 59Â K protein. Analysis of the interactions between each snRNP protein using yeast two-hybrid analysis and in planta bimolecular fluorescence complementation and luciferase complementation imaging assays demonstrated that the core interactions among the 65Â K, 59Â K, and 48Â K proteins were conserved between plants and animals, and multiple interactions were observed among the U11/U12-snRNP proteins. Taken together, these results reveal that U11/U12-65K is an indispensible component of the minor spliceosome complex by binding to both U11/U12-59K and U12 snRNA, and that multiple interactions among the U11/U12-snRNP proteins are necessary for minor spliceosome assembly.
Structural features important for the U12 snRNA binding and minor spliceosome assembly of Arabidopsis U11/U12-small nuclear ribonucleoproteins.
拟南芥 U11/U12 小核核糖核蛋白的 U12 snRNA 结合和次要剪接体组装的重要结构特征
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作者:Park Su Jung, Jung Hyun Ju, Nguyen Dinh Sy, Kang Hunseung
| 期刊: | RNA Biology | 影响因子: | 3.400 |
| 时间: | 2016 | 起止号: | 2016 Jul 2; 13(7):670-9 |
| doi: | 10.1080/15476286.2016.1191736 | 研究方向: | 免疫/内分泌 |
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