Lehrstuhl für Biochemie III, Universität Regensburg, Regensburg, Germany.
PLoS One. 2019 Jan 17;14(1):e0203415. doi: 10.1371/journal.pone.0203415. eCollection 2019.
Many of the small ribosomal subunit proteins are required for the stabilisation of late small ribosomal subunit (SSU) precursors and for final SSU rRNA processing in S. cerevisiae. Among them are ribosomal proteins (r-proteins) which form a protein cluster around rpS0 (uS2) at the "neck" of the SSU (S0-cluster) and others forming a nearby protein cluster around rpS3 (uS3) at the SSU "beak". Here we applied semi-quantitative proteomics together with complementary biochemical approaches to study how incomplete assembly of these two r-protein clusters affects binding and release of SSU maturation factors and assembly of other r-proteins in late SSU precursors in S. cerevisiae. For each of the two clusters specific impairment of the local r-protein assembly state was observed in Rio2 associated SSU precursors. Besides, cluster-specific effects on the association of biogenesis factors were detected. These suggested a role of S0-cluster formation for the efficient release of the two nuclear export factors Rrp12 and Slx9 from SSU precursors and for the correct incorporation of the late acting biogenesis factor Rio2. Based on our and on previous results we propose the existence of at least two different r-protein assembly checkpoints during late SSU maturation in S. cerevisiae. We discuss in the light of recent SSU precursor structure models how r-protein assembly states might be sensed by biogenesis factors at the S0-cluster checkpoint.
许多小核糖体亚基蛋白对于稳定晚期小核糖体亚基(SSU)前体和最终的 SSU rRNA 加工在酿酒酵母中是必需的。其中包括核糖体蛋白(r 蛋白),它们在 SSU 的“颈部”(S0 簇)围绕 rpS0(uS2)形成一个蛋白质簇,而其他蛋白则在 SSU 的“喙部”(S0 簇)周围形成一个附近的蛋白质簇。在这里,我们应用半定量蛋白质组学和互补的生化方法来研究这两个 r 蛋白簇的不完全组装如何影响 SSU 成熟因子的结合和释放以及晚期 SSU 前体中其他 r 蛋白的组装。对于这两个簇中的每一个,都观察到 Rio2 相关的 SSU 前体中特定的局部 r 蛋白组装状态受损。此外,还检测到了对生物发生因子结合的簇特异性影响。这表明 S0 簇的形成对于从 SSU 前体中有效释放两个核输出因子 Rrp12 和 Slx9 以及正确掺入晚期作用的生物发生因子 Rio2 具有重要作用。基于我们和以前的结果,我们提出了在酿酒酵母中晚期 SSU 成熟过程中至少存在两个不同的 r 蛋白组装检查点。我们根据最近的 SSU 前体结构模型讨论了 r 蛋白组装状态如何通过生物发生因子在 S0 簇检查点进行感知。