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从新生的60S核糖体亚基上通过机械化学方式去除核糖体生物合成因子。

Mechanochemical removal of ribosome biogenesis factors from nascent 60S ribosomal subunits.

作者信息

Ulbrich Cornelia, Diepholz Meikel, Bassler Jochen, Kressler Dieter, Pertschy Brigitte, Galani Kyriaki, Böttcher Bettina, Hurt Ed

机构信息

Biochemie-Zentrum der Universität Heidelberg, Im Neuenheimer Feld 328, 69120 Heidelberg, Germany.

出版信息

Cell. 2009 Sep 4;138(5):911-22. doi: 10.1016/j.cell.2009.06.045.

Abstract

The dynein-related AAA ATPase Rea1 is a preribosomal factor that triggers an unknown maturation step in 60S subunit biogenesis. Using electron microscopy, we show that Rea1's motor domain is docked to the pre-60S particle and its tail-like structure, harboring a metal ion-dependent adhesion site (MIDAS), protrudes from the preribosome. Typically, integrins utilize a MIDAS to bind extracellular ligands, an interaction that is strengthened under applied tensile force. Likewise, the Rea1 MIDAS binds the preribosomal factor Rsa4, which is located on the pre-60S subunit at a site that is contacted by the flexible Rea1 tail. The MIDAS-Rsa4 interaction is essential for ATP-dependent dissociation of a group of non-ribosomal factors from the pre-60S particle. Thus, Rea1 aligns with its interacting partners on the preribosome to effect a necessary step on the path to the export-competent 60S subunit.

摘要

动力蛋白相关的AAA型ATP酶Rea1是一种核糖体前体因子,它在60S亚基生物合成过程中触发一个未知的成熟步骤。通过电子显微镜,我们发现Rea1的马达结构域与前60S颗粒对接,其尾状结构含有一个金属离子依赖性粘附位点(MIDAS),从前核糖体突出。通常,整合素利用MIDAS结合细胞外配体,这种相互作用在施加拉力时会增强。同样,Rea1的MIDAS结合核糖体前体因子Rsa4,Rsa4位于前60S亚基上一个可被灵活的Rea1尾巴接触的位点。MIDAS与Rsa4的相互作用对于一组非核糖体因子从前60S颗粒上以ATP依赖方式解离至关重要。因此,Rea1与核糖体前体上的相互作用伙伴对齐,以在通往具备输出能力的60S亚基的路径上实现一个必要步骤。

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