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Localization of eukaryote-specific ribosomal proteins in a 5.5-angstrom cryo-EM map of the 80S eukaryotic ribosome.

机译:真核特异性核糖体蛋白在80s真核核糖体的5.5埃冷冻Em图中的定位。

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摘要

Protein synthesis in all living organisms occurs on ribonucleoprotein particles, called ribosomes. Despite the universality of this process, eukaryotic ribosomes are significantly larger in size than their bacterial counterparts due in part to the presence of 80 r proteins rather than 54 in bacteria. Using cryoelectron microscopy reconstructions of a translating plant (Triticum aestivum) 80S ribosome at 5.5-Å resolution, together with a 6.1-Å map of a translating Saccharomyces cerevisiae 80S ribosome, we have localized and modeled 74/80 (92.5%) of the ribosomal proteins, encompassing 12 archaeal/eukaryote-specific small subunit proteins as well as the complete complement of the ribosomal proteins of the eukaryotic large subunit. Near-complete atomic models of the 80S ribosome provide insights into the structure, function, and evolution of the eukaryotic translational apparatus.
机译:所有活生物体中的蛋白质合成均发生在称为核糖体的核糖核蛋白颗粒上。尽管此过程普遍存在,但真核生物核糖体的大小仍明显大于其细菌对应物,部分原因是细菌中存在80 r蛋白而不是54 r蛋白。使用5.5Å分辨率的转化植物(Triticum aestivum)80S核糖体的冷冻电子显微镜重建以及啤酒酵母80S核糖体的6.1-Å图,我们已经定位并建模了74/80(92.5%)的核糖体蛋白,包括12种古细菌/真核生物特异性小亚基蛋白,以及真核大亚基核糖体蛋白的完整补体。 80S核糖体的近乎完整的原子模型为真核翻译设备的结构,功能和进化提供了见识。

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