Department of Biology, University of Fribourg, Fribourg, Switzerland.
Metabolomics and Proteomics Platform, Department of Biology, University of Fribourg, Fribourg, Switzerland.
Elife. 2022 Mar 31;11:e74255. doi: 10.7554/eLife.74255.
The biogenesis of eukaryotic ribosomes involves the ordered assembly of around 80 ribosomal proteins. Supplying equimolar amounts of assembly-competent ribosomal proteins is complicated by their aggregation propensity and the spatial separation of their location of synthesis and pre-ribosome incorporation. Recent evidence has highlighted that dedicated chaperones protect individual, unassembled ribosomal proteins on their path to the pre-ribosomal assembly site. Here, we show that the co-translational recognition of Rpl3 and Rpl4 by their respective dedicated chaperone, Rrb1 or Acl4, reduces the degradation of the encoding and mRNAs in the yeast . In both cases, negative regulation of mRNA levels occurs when the availability of the dedicated chaperone is limited and the nascent ribosomal protein is instead accessible to a regulatory machinery consisting of the nascent-polypeptide-associated complex and the Caf130-associated Ccr4-Not complex. Notably, deregulated expression of Rpl3 and Rpl4 leads to their massive aggregation and a perturbation of overall proteostasis in cells lacking the E3 ubiquitin ligase Tom1. Taken together, we have uncovered an unprecedented regulatory mechanism that adjusts the de novo synthesis of Rpl3 and Rpl4 to their actual consumption during ribosome assembly and, thereby, protects cells from the potentially detrimental effects of their surplus production.
真核核糖体的生物发生涉及大约 80 种核糖体蛋白的有序组装。由于它们的聚集倾向和合成位置与前核糖体掺入位置的空间分离,使得等量供应具有组装能力的核糖体蛋白变得复杂。最近的证据强调了专门的伴侣蛋白可以保护其途径前核糖体组装部位的各个未组装核糖体蛋白。在这里,我们表明 Rpl3 和 Rpl4 与其各自的专用伴侣蛋白 Rrb1 或 Acl4 的共翻译识别降低了酵母 中编码 和 mRNA 的降解。在这两种情况下,当专用伴侣蛋白的可用性受到限制,并且新生核糖体蛋白可被由新生多肽相关复合物和 Caf130 相关 Ccr4-Not 复合物组成的调节机制访问时,mRNA 水平的负调节会发生。值得注意的是,在缺乏 E3 泛素连接酶 Tom1 的细胞中,Rpl3 和 Rpl4 的表达失调会导致它们大量聚集,并破坏整体蛋白质稳态。总之,我们揭示了一种前所未有的调节机制,该机制可根据核糖体组装过程中实际消耗的情况来调整 Rpl3 和 Rpl4 的从头合成,从而保护细胞免受其过量产生的潜在有害影响。