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When a ribosomal protein grows up - the ribosome assembly path of Rps3

机译:当核糖体蛋白长大时-Rps3的核糖体组装路径

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摘要

The biogenesis of ribosomes is a central process in all dividing cells. Eukaryotic ribosomes are composed of a large 60S and a small 40S subunit, each comprising a complex assembly of ribosomal RNA (rRNA) and ribosomal proteins (r-proteins). The synthesis of these constituents is spatially separated, with r-proteins being produced by translation in the cytoplasm, while rRNA is generated by transcription in the nucleus. Hence, the arrangement of r-proteins and rRNA into large ribonucleoprotein complexes requires dedicated mechanisms ensuring their encounter in the same compartment. To this end, r-proteins need to be safely delivered to the nucleus where they assemble with the rRNA. Beyond these initial challenges, the synthesis of ribosomes does not merely comprise the joining of r-proteins with rRNA, but occurs in a complex assembly line involving multiple maturation steps, including the processing and folding of rRNA. R-proteins usually have composite rRNA binding sites, with several different rRNA helices contributing to the full interaction. Not all of these interaction sites may already be accessible at the point when an r-protein is incorporated, necessitating that some of the r-protein-rRNA contacts are formed at later maturation stages. In our two recent studies, we investigated the ribosome assembly path of r-proteins in the yeast Saccharomyces cerevisiae using the small subunit r-protein S3 (Rps3) as a model. Our studies revealed intricate mechanisms to protect the protein, transport it into the nucleus, integrate it into pre-ribosomal precursor particles and promote its final stable association with 40S subunits.
机译:核糖体的生物发生是所有分裂细胞的中心过程。真核生物核糖体由一个大的60S和一个小的40S亚基组成,每个亚基都包含核糖体RNA(rRNA)和核糖体蛋白(r-蛋白)的复杂组装。这些成分的合成在空间上是分开的,r蛋白是通过在细胞质中翻译而产生的,而rRNA是通过在核中转录而产生的。因此,将r蛋白和rRNA排列成大的核糖核蛋白复合物需要专门的机制,以确保它们在同一隔室中相遇。为此,r蛋白需要安全地传递到细胞核中,并与rRNA组装在一起。除了这些最初的挑战之外,核糖体的合成不仅包括r蛋白与rRNA的连接,而且还发生在涉及多个成熟步骤(包括rRNA的加工和折叠)的复杂装配线上。 R蛋白通常具有复合的rRNA结合位点,其中几个不同的rRNA螺旋有助于完全相互作用。在并入r蛋白时,并非所有这些相互作用位点都已经可以访问,因此某些r蛋白与rRNA接触必须在以后的成熟阶段形成。在我们最近的两项研究中,我们使用小亚基r蛋白S3(Rps3)作为模型,研究了酿酒酵母中r蛋白的核糖体组装途径。我们的研究揭示了保护蛋白质,将其运输到核中,将其整合到核糖体前体前体颗粒中并促进其与40S亚基最终稳定缔合的复杂机制。

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