MRC Laboratory of Molecular Biology (LMB), Cambridge, UK.
Freie University of Berlin, Berlin, Germany.
Nat Struct Mol Biol. 2023 Sep;30(9):1314-1322. doi: 10.1038/s41594-023-01075-8. Epub 2023 Aug 31.
Translation affects messenger RNA stability and, in yeast, this is mediated by the Ccr4-Not deadenylation complex. The details of this process in mammals remain unclear. Here, we use cryogenic electron microscopy (cryo-EM) and crosslinking mass spectrometry to show that mammalian CCR4-NOT specifically recognizes ribosomes that are stalled during translation elongation in an in vitro reconstituted system with rabbit and human components. Similar to yeast, mammalian CCR4-NOT inserts a helical bundle of its CNOT3 subunit into the empty E site of the ribosome. Our cryo-EM structure shows that CNOT3 also locks the L1 stalk in an open conformation to inhibit further translation. CCR4-NOT is required for stable association of the nonconstitutive subunit CNOT4, which ubiquitinates the ribosome, likely to signal stalled translation elongation. Overall, our work shows that human CCR4-NOT not only detects but also enforces ribosomal stalling to couple translation and mRNA decay.
翻译会影响信使 RNA 的稳定性,在酵母中,这是由 Ccr4-Not 去腺苷酸化复合物介导的。哺乳动物中这一过程的细节尚不清楚。在这里,我们使用低温电子显微镜 (cryo-EM) 和交联质谱法来显示,在兔和人成分的体外重建系统中,哺乳动物的 CCR4-NOT 特异性地识别在翻译延伸过程中停滞的核糖体。与酵母相似,哺乳动物的 CCR4-NOT 将其 CNOT3 亚基的螺旋束插入核糖体的空 E 位。我们的 cryo-EM 结构表明,CNOT3 还将 L1 茎锁定在开放构象中,以抑制进一步的翻译。CCR4-NOT 对于非组成性亚基 CNOT4 的稳定结合是必需的,CNOT4 会使核糖体泛素化,可能会发出翻译延伸停滞的信号。总的来说,我们的工作表明,人 CCR4-NOT 不仅可以检测,还可以强制核糖体停滞,从而将翻译和 mRNA 降解联系起来。