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首页> 外文期刊>Journal of Molecular Biology >Cyanelle RNase P: RNA structure analysis and holoenzyme properties of an organellar ribonucleoprotein enzyme.
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Cyanelle RNase P: RNA structure analysis and holoenzyme properties of an organellar ribonucleoprotein enzyme.

机译:Cyanelle RNase P:细胞器核糖核蛋白酶的RNA结构分析和全酶特性。

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The cyanelle of the primitive alga Cyanophora paradoxa is the only photosynthetic organelle where the ribonucleoprotein nature of ribonuclease P has been functionally proven. To increase our knowledge about RNA structure and overall composition of this enzyme, we have now determined relevant physical parameters and performed RNA accessibility experiments. Buoyant density and relative molecular mass of cyanelle RNase P were more similar to the eukaryotic (nuclear or mitochondrial) than to the bacterial enzyme type, despite the close phylogenetic relationship between plastids and cyanobacteria. Enzymatic and chemical probing was used to establish the secondary structure of cyanelle RNase P RNA. The results obtained with the naked transcript support the previously proposed, phylogenetically derived structure. Probing of the RNA in the holoenzyme resulted in reduced sensitivity at a large number of positions, indicating that these regions might be located in the interior of the ribonucleoprotein. Protection of the RNA in cyanelle RNase P was more extensive than reported for the Escherichia coli holoenzyme, but similar to the pattern observed in yeast nuclear RNase P. Taken together, these results indicate that the protein contribution in cyanelle RNase P is much larger than in the bacterial enzymes, and that the overall composition of the holoenzyme resembles that found in eukaryotes. Copyright 1999 Academic Press.
机译:原始藻类Cyanophora paradoxa的蓝绿色是唯一已在功能上证明了核糖核酸酶P的核糖核蛋白性质的光合细胞器。为了增加我们对这种酶的RNA结构和整体组成的了解,我们现在确定了相关的物理参数并进行了RNA可及性实验。尽管质体和蓝细菌之间有着密切的系统发育关系,但蓝藻RNase P的浮力密度和相对分子质量与真核生物(核或线粒体)相比更类似于细菌酶类型。酶和化学探测被用来建立蓝藻RNase P RNA的二级结构。用裸转录本获得的结果支持先前提出的系统发育衍生的结构。探测全酶中的RNA会导致大量位置的敏感性降低,表明这些区域可能位于核糖核蛋白内部。氰化酶RNase P中RNA的保护范围比大肠杆菌全酶要广泛,但与酵母核RNase P中观察到的模式相似。综上所述,这些结果表明,氰化酶RNase P中的蛋白质贡献比酵母核糖核酸酶P中的更大。细菌酶,以及全酶的整体组成类似于真核生物。版权所有1999,学术出版社。

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