Biochemistry Center, University of Heidelberg, Heidelberg, Germany.
Gene Center, University of Munich, Munich, Germany.
Elife. 2023 Mar 17;12:e84877. doi: 10.7554/eLife.84877.
Biogenesis intermediates of nucleolar ribosomal 60S precursor particles undergo a number of structural maturation steps before they transit to the nucleoplasm and are finally exported into the cytoplasm. The AAA-ATPase Rea1 participates in the nucleolar exit by releasing the Ytm1-Erb1 heterodimer from the evolving pre-60S particle. Here, we show that the DEAD-box RNA helicase Spb4 with its interacting partner Rrp17 is further integrated into this maturation event. Spb4 binds to a specific class of late nucleolar pre-60S intermediates, whose cryo-EM structure revealed how its helicase activity facilitates melting and restructuring of 25S rRNA helices H62 and H63/H63a prior to Ytm1-Erb1 release. In vitro maturation of such Spb4-enriched pre-60S particles, incubated with purified Rea1 and its associated pentameric Rix1-complex in the presence of ATP, combined with cryo-EM analysis depicted the details of the Rea1-dependent large-scale pre-ribosomal remodeling. Our structural insights unveil how the Rea1 ATPase and Spb4 helicase remodel late nucleolar pre-60S particles by rRNA restructuring and dismantling of a network of several ribosomal assembly factors.
核仁核糖体 60S 前体颗粒的生物发生中间体在转运到核质并最终输出到细胞质之前,经历了许多结构成熟步骤。AAA-ATP 酶 Rea1 通过从进化中的前 60S 颗粒中释放 Ytm1-Erb1 异二聚体来参与核仁出口。在这里,我们表明 DEAD-box RNA 解旋酶 Spb4 与其相互作用伙伴 Rrp17 进一步整合到这个成熟事件中。Spb4 结合到一类特定的晚期核仁前 60S 中间体,其冷冻电镜结构揭示了其解旋酶活性如何在 Ytm1-Erb1 释放之前促进 25S rRNA 螺旋 H62 和 H63/H63a 的熔化和重排。用纯化的 Rea1 及其相关的五聚体 Rix1 复合物在 ATP 存在的情况下孵育富含 Spb4 的此类前 60S 颗粒的体外成熟,并结合冷冻电镜分析,描绘了 Rea1 依赖性大尺度前核糖体重塑的细节。我们的结构见解揭示了 Rea1 ATP 酶和 Spb4 解旋酶如何通过 rRNA 重排和几个核糖体组装因子网络的拆卸来重塑晚期核仁前 60S 颗粒。