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60S ribosomal subunit assembly dynamics defined by semi-quantitative mass spectrometry of purified complexes.

机译:通过纯化复合物的半定量质谱法确定的60S核糖体亚基组装动力学。

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摘要

During the highly conserved process of eukaryotic ribosome formation, RNA follows a maturation path with well-defined, successive intermediates that dynamically associate with many pre-ribosomal proteins. A comprehensive description of the assembly process is still lacking. To obtain data on the timing and order of association of the different pre-ribosomal factors, a strategy consists in the use of pre-ribsomal particles isolated from mutants that block ribosome formation at different steps. Immunoblots, inherently limited to only a few factors, have been applied to evaluate the accumulation or decrease of pre-ribosomal intermediates under mutant conditions. For a global protein-level description of different 60S ribosomal subunit maturation intermediates in yeast, we have adapted a method of in vivo isotopic labelling and mass spectrometry to study pre-60S complexes isolated from strains in which rRNA processing was affected by individual depletion of five factors: Ebp2, Nog1, Nsa2, Nog2 or Pop3. We obtained quantitative data for 45 distinct pre-60S proteins and detected coordinated changes for over 30 pre-60S factors in the analysed mutants. These results led to the characterisation of the composition of early, intermediate and late pre-ribosomal complexes, specific for crucial maturation steps during 60S assembly in eukaryotes.
机译:在真核生物核糖体形成的高度保守的过程中,RNA遵循成熟的路径,该路径具有定义明确的连续中间体,该中间体与许多核糖体前体蛋白动态缔合。仍然缺乏对组装过程的全面描述。为了获得有关不同核糖体前因子关联的时间和顺序的数据,一种策略在于使用从突变体中分离的核糖体前颗粒,这些突变体在不同步骤阻止了核糖体的形成。固有地仅限于少数几个因素的免疫印迹已用于评估突变条件下核糖体前中间体的积累或减少。为了对酵母中不同的60S核糖体亚基成熟中间体进行全面的蛋白质水平描述,我们采用了一种体内同位素标记和质谱分析方法,以研究从分离自其中rRNA加工受五个个体消耗影响的菌株中分离的60S前复合物。因素:Ebp2,Nog1,Nsa2,Nog2或Pop3。我们获得了45种不同的60S前蛋白的定量数据,并在分析的突变体中检测到30多个60S前因子的协同变化。这些结果导致了早期,中期和晚期核糖体复合物的成分表征,这些复合物特定于真核生物在60S组装过程中的关键成熟步骤。

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