Seif Elias, Cadieux Alexandre, Lang B Franz
Canadian Institute for Advanced Research, Robert-Cedergren Centre for Bioinformatics and Genomics, Département de Biochimie, Université de Montréal, Montréal, Québec, H3T 1J4, Canada.
RNA. 2006 Sep;12(9):1661-70. doi: 10.1261/rna.52106. Epub 2006 Aug 7.
RNase P is a ribonucleoprotein that cleaves tRNA precursors at their 5'-end. Mitochondrion-encoded RNA subunits of mitochondrial RNase P (mtP-RNA) have been identified in jakobid flagellates such as Reclinomonas americana, in the prasinophyte alga Nephroselmis olivacea, and in several ascomycete and zygomycete fungi. While the structures of ascomycete mtP-RNAs are highly reduced, those of jakobids, prasinophytes, and zygomycetes retain most conserved features of their bacterial counterparts. Therefore, these mtP-RNAs might be active in vitro in the absence of a protein subunit, as are bacterial P-RNAs. Here we present a comparative structural analysis including seven newly characterized jakobid mtP-RNAs. We investigate ribozyme activities of mtP-RNAs and find that even the most bacteria-like molecules of jakobids are inactive in vitro. However, when certain domains of jakobid and N. olivacea mtP-RNAs are replaced with those from Escherichia coli, these hybrid RNAs show catalytic activity. In vitro mutagenesis of these hybrid mtP-RNAs shows that various structural elements play a critical role in ribozyme catalysis and provide further support for the presence of these elements in mtP-RNAs. These include GNRA tetraloops in helix P14 and P18 of Jakoba libera, and a remnant P3 pairing in Seculamonas ecuadoriensis. Finally, we will discuss reasons for the failure of mtP-RNAs to show catalytic activity in the absence of P-proteins based on our mutagenesis analysis.
核糖核酸酶P是一种核糖核蛋白,可在tRNA前体的5'端进行切割。线粒体核糖核酸酶P(mtP-RNA)的线粒体编码RNA亚基已在诸如美国斜叶鞭毛虫等贾科比鞭毛虫、绿藻门藻类橄榄肾形藻以及几种子囊菌和接合菌真菌中被鉴定出来。虽然子囊菌mtP-RNA的结构高度简化,但贾科比鞭毛虫、绿藻门藻类和接合菌的mtP-RNA保留了其细菌对应物的大多数保守特征。因此,这些mtP-RNA可能在没有蛋白质亚基的情况下在体外具有活性,就像细菌P-RNA一样。在此,我们展示了一项比较结构分析,其中包括七个新鉴定的贾科比鞭毛虫mtP-RNA。我们研究了mtP-RNA的核酶活性,发现即使是贾科比鞭毛虫中最类似细菌的分子在体外也无活性。然而,当用大肠杆菌的某些结构域替换贾科比鞭毛虫和橄榄肾形藻mtP-RNA的特定结构域时,这些杂交RNA显示出催化活性。对这些杂交mtP-RNA进行体外诱变表明,各种结构元件在核酶催化中起关键作用,并为这些元件在mtP-RNA中的存在提供了进一步支持。这些元件包括自由贾科比螺旋P14和P18中的GNRA四环,以及厄瓜多尔隐滴虫中的残余P3配对。最后,我们将根据诱变分析讨论mtP-RNA在没有P蛋白时未能显示催化活性的原因。