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Cryoelectron microscopy and cryoelectron tomography of the nuclear pre-mRNA processing machine

机译:核前mRNA处理机的低温电子显微镜和低温电子断层扫描

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Large nuclear ribonucleoprotein particles, which can be viewed as the naturally assembled precursor messenger RNA (pre-mRNA) processing machine, were analyzed in frozen-hydrated preparations by cryoelectron microscopy. A general and reproducible strategy for preparing ice-embedded large nuclear ribonucleoprotein (lnRNP) particles at sufficiently high concentration was developed. Taking advantage of their negatively charged components, the lnRNP particles are adsorbed and thus concentrated on a positively charged lipid monolayer while preserving their native structure. Using this approach we carried out cryoelectron tomography and three-dimensional image reconstruction of individual InRNP particles. The study revealed a structure similar to that of negatively stained particles studied previously, yet with additional features. The small additional domain visualized in negative stain appeared to be larger in the ice preparations. In addition, using image restoration from focus series of ice-embedded InRNP particles, new features such as holes within the subunits were visualized in two dimensions, and it was shown that the subunits are interconnected via a fiber, very likely formed by the pre-mRNA. This finding supports the model that each subunit represents a spliceosome that splices out the intron wound around it.
机译:大的核糖核蛋白颗粒,可以看作是天然组装的前体信使RNA(pre-mRNA)处理机,通过冷冻电子显微镜在冷冻水合制剂中进行了分析。开发了一种通用且可重现的策略,以足够高的浓度制备冰包埋的大核核糖核蛋白(lnRNP)颗粒。利用其带负电荷的成分,lnRNP颗粒被吸附,因此浓缩在带正电荷的脂质单层上,同时保留其天然结构。使用这种方法,我们对单个InRNP粒子进行了冷冻电子断层扫描和三维图像重建。该研究揭示了与先前研究的负染颗粒相似的结构,但具有其他功能。在冰制品中,以负染剂显现的小的附加区域似乎更大。此外,使用从嵌入冰块的InRNP颗粒的焦点系列中的图像复原,可以在二维上可视化新特征(例如,亚基中的孔),并且表明亚基通过纤维相互连接,这很可能是由预先形成的mRNA。这一发现支持了这样的模型,即每个亚基代表一个剪接体,该剪接体剪接围绕它的内含子伤口。

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