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Mass Spectrometry Defines the Stoichiometry of Ribosomal Stalk Complexes across the Phylogenetic Tree

机译:质谱定义了系统发育树中核糖体茎复合物的化学计量

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摘要

The ribosomal stalk complex plays a crucial role in delivering translation factors to the catalytic site of the ribosome. It has a very similar architecture in all cells, although the protein components in bacteria are unrelated to those in archaea and eukaryotes. Here we used mass spectrometry to investigate ribosomal stalk complexes from bacteria, eukaryotes, and archaea in situ on the ribosome. Specifically we targeted ribosomes with different optimal growth temperatures. Our results showed that for the mesophilic bacterial ribosomes we investigated the stalk complexes are exclusively pentameric or entirely heptameric in the case of thermophilic bacteria, whereas we observed only pentameric stalk complexes in eukaryotic species. We also found the surprising result that for mesophilic archaea, Methanococcus vannielii, Methanococcus maripaludis, and Methanosarcina barkeri, both pentameric and heptameric stoichiometries are present simultaneously within a population of ribosomes. Moreover the ratio of pentameric to heptameric stalk complexes changed during the course of cell growth. We consider these differences in stoichiometry within ribosomal stalk complexes in the context of convergent evolution.
机译:核糖体茎复合物在将翻译因子传递到核糖体的催化位点中起着至关重要的作用。尽管细菌中的蛋白质成分与古细菌和真核生物中的蛋白质成分无关,但它在所有细胞中的结构都非常相似。在这里,我们使用质谱技术来研究核糖体上细菌,真核生物和古细菌的核糖体茎复合物。具体来说,我们针对具有不同最佳生长温度的核糖体。我们的结果表明,对于嗜温细菌核糖体,在嗜热细菌的情况下,我们研究了茎复合物完全是五聚体或完全是七聚体,而在真核生物中仅观察到五聚体茎复合体。我们还发现了令人惊讶的结果,对于嗜温古生菌,甲烷甲烷球菌,马氏甲烷球菌和巴氏甲烷球菌,五聚体和七聚体化学计量比同时存在于核糖体群体中。而且,五聚体与七聚体茎复合物的比例在细胞生长过程中改变。我们考虑在趋同进化的背景下核糖体茎复合物中化学计量的这些差异。

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