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Heptameric (L12)6/L10 rather than canonical pentameric complexes are found by tandem MS of intact ribosomes from thermophilic bacteria.

机译:通过串联质谱分析来自嗜热细菌的完整核糖体发现七聚体(L12)6 / L10,而不是典型的五聚体。

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摘要

Ribosomes are universal translators of the genetic code into protein and represent macromolecular structures that are asymmetric, often heterogeneous, and contain dynamic regions. These properties pose considerable challenges for modern-day structural biology. Despite these obstacles, high-resolution x-ray structures of the 30S and 50S subunits have revealed the RNA architecture and its interactions with proteins for ribosomes from Thermus thermophilus, Deinococcus radiodurans, and Haloarcula marismortui. Some regions, however, remain inaccessible to these high-resolution approaches because of their high conformational dynamics and potential heterogeneity, specifically the so-called L7/L12 stalk complex. This region plays a vital role in protein synthesis by interacting with GTPase factors in translation. Here, we apply tandem MS, an approach widely applied to peptide sequencing for proteomic applications but not previously applied to MDa complexes. Isolation and activation of ions assigned to intact 30S and 50S subunits releases proteins S6 and L12, respectively. Importantly, this process reveals, exclusively while attached to ribosomes, a phosphorylation of L12, the protein located in multiple copies at the tip of the stalk complex. Moreover, through tandem MS we discovered a stoichiometry for the stalk protuberance on Thermus thermophilus and other thermophiles and contrast this assembly with the analogous one on ribosomes from mesophiles. Together with evidence for a potential interaction with the degradosome, these results show that important findings on ribosome structure, interactions, and modifications can be discovered by tandem MS, even on well studied ribosomes from Thermus thermophilus.
机译:核糖体是遗传密码到蛋白质的通用翻译子,代表不对称,通常为异质且包含动态区域的大分子结构。这些特性对现代结构生物学构成了巨大挑战。尽管有这些障碍,但30S和50S亚基的高分辨率X射线结构揭示了RNA结构及其与嗜热栖热菌,放射嗜热球菌和滨海假单胞菌核糖体蛋白质的相互作用。但是,由于它们的高构象动力学和潜在的异质性,某些区域仍然无法使用这些高分辨率方法,特别是所谓的L7 / L12茎复合体。通过与翻译中的GTPase因子相互作用,该区域在蛋白质合成中起着至关重要的作用。在这里,我们应用串联质谱,这是一种广泛应用于蛋白质组学应用的肽测序的方法,但以前不适用于MDa复合物。分配给完整的30S和50S亚基的离子的分离和激活分别释放蛋白质S6和L12。重要的是,该过程仅在与核糖体连接时揭示了L12的磷酸化,该蛋白质位于茎复合物尖端的多个副本中。此外,通过串联质谱,我们发现了嗜热栖热菌和其他嗜热菌的茎突化学计量,并将这种组装与嗜温菌核糖体上的类似物进行了对比。这些结果连同与降解体潜在相互作用的证据一起表明,即使通过充分研究的嗜热栖热菌核糖体,也可以通过串联质谱发现关于核糖体结构,相互作用和修饰的重要发现。

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