Ambrósio Daniela L, Badjatia Nitika, Günzl Arthur
Department of Genetics and Genome Sciences, University of Connecticut Health Center, 400 Farmington Avenue, Farmington, CT, 06030-6403, USA.
Mol Microbiol. 2015 Mar;95(5):885-901. doi: 10.1111/mmi.12910. Epub 2015 Jan 30.
In trypanosomes, mRNAs are processed by spliced leader (SL) trans splicing, in which a capped SL, derived from SL RNA, is spliced onto the 5' end of each mRNA. This process is mediated by the spliceosome, a large and dynamic RNA-protein machinery consisting of small nuclear ribonucleoproteins (snRNPs) and non-snRNP proteins. Due to early evolutionary divergence, the amino acid sequences of trypanosome splicing factors exhibit limited similarity to those of their eukaryotic orthologs making their bioinformatic identification challenging. Most of the ~ 60 protein components that have been characterized thus far are snRNP proteins because, in contrast to individual snRNPs, purification of intact spliceosomes has not been achieved yet. Here, we characterize the non-snRNP PRP19 complex of Trypanosoma brucei. We identified a complex that contained the core subunits PRP19, CDC5, PRL1, and SPF27, as well as PRP17, SKIP and PPIL1. Three of these proteins were newly annotated. The PRP19 complex was associated primarily with the activated spliceosome and, accordingly, SPF27 silencing blocked the first splicing step. Interestingly, SPF27 silencing caused an accumulation of SL RNA with a hypomethylated cap that closely resembled the defect observed previously upon depletion of the cyclin-dependent kinase CRK9, indicating that both proteins may function in spliceosome activation.
在锥虫中,mRNA通过剪接前导序列(SL)反式剪接进行加工,即从SL RNA衍生而来的带帽SL被剪接到每个mRNA的5'末端。这个过程由剪接体介导,剪接体是一种由小核核糖核蛋白(snRNP)和非snRNP蛋白组成的大型动态RNA-蛋白质机器。由于早期的进化分歧,锥虫剪接因子的氨基酸序列与其真核直系同源物的序列相似性有限,这使得它们的生物信息学鉴定具有挑战性。迄今为止已鉴定的约60种蛋白质成分中的大多数是snRNP蛋白,因为与单个snRNP不同,完整剪接体的纯化尚未实现。在这里,我们对布氏锥虫的非snRNP PRP19复合物进行了表征。我们鉴定出一个包含核心亚基PRP19、CDC5、PRL1和SPF27,以及PRP17、SKIP和PPIL1的复合物。其中三种蛋白质是新注释的。PRP19复合物主要与活化的剪接体相关,因此,SPF27沉默阻断了第一步剪接。有趣的是,SPF27沉默导致了帽甲基化不足的SL RNA的积累,这与之前在细胞周期蛋白依赖性激酶CRK9缺失时观察到的缺陷非常相似,表明这两种蛋白质可能在剪接体活化中发挥作用。