Biochemistry Centre, University of Heidelberg, Heidelberg, 69221, Germany.
Department of Biochemistry, Gene Center, Center for integrated Protein Science - Munich (CiPS-M), Ludwig-Maximillian University, Munich, 81377, Germany.
Nat Commun. 2017 Dec 20;8(1):2213. doi: 10.1038/s41467-017-02199-4.
Ribosome biogenesis begins in the nucleolus with the formation of 90S pre-ribosomes, from which pre-40S and pre-60S particles arise that subsequently follow separate maturation pathways. Here, we show how structurally related assembly factors, the KH domain proteins Krr1 and Dim2, participate in ribosome assembly. Initially, Dim2 (Pno1) orchestrates an early step in small subunit biogenesis through its binding to a distinct region of the 90S pre-ribosome. This involves Utp1 of the UTP-B module, and Utp14, an activator of the DEAH-box helicase Dhr1 that catalyzes the removal of U3 snoRNP from the 90S. Following this dismantling reaction, the pre-40S subunit emerges, but Dim2 relocates to the pre-40S platform domain, previously occupied in the 90S by the other KH factor Krr1 through its interaction with Rps14 and the UTP-C module. Our findings show how the structurally related Krr1 and Dim2 can control stepwise ribosome assembly during the 90S-to-pre-40S subunit transition.
核糖体生物发生始于核仁,形成 90S 前核糖体,从前核糖体中产生出 pre-40S 和 pre-60S 颗粒,随后它们沿着不同的成熟途径进行。在这里,我们展示了结构相关的组装因子,KH 结构域蛋白 Krr1 和 Dim2 如何参与核糖体组装。最初,Dim2(Pno1)通过与其结合来协调小亚基生物发生的早期步骤90S 前核糖体的一个独特区域。这涉及 UTP-B 模块的 Utp1 和 Utp14,后者是 DEAH-box 解旋酶 Dhr1 的激活因子,催化 U3 snoRNP 从 90S 中去除。在这个拆卸反应之后,出现了 pre-40S 亚基,但 Dim2 重新定位到 pre-40S 平台域,先前该域被其他 KH 因子 Krr1 通过与 Rps14 和 UTP-C 模块的相互作用占据。我们的发现表明,结构相关的 Krr1 和 Dim2 如何在 90S 到 pre-40S 亚基转变过程中控制核糖体组装的逐步进行。