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Sas10 通过稳定 Mpp10 并将 Mpp10-Imp3-Imp4 复合物递送至核仁来控制核糖体的生物发生。

Sas10 controls ribosome biogenesis by stabilizing Mpp10 and delivering the Mpp10-Imp3-Imp4 complex to nucleolus.

机构信息

MOE Key Laboratory for Molecular Animal Nutrition, College of Animal Sciences, Zhejiang University, Hangzhou, 310058, China.

College of Life Sciences, Zhejiang University, Hangzhou, 310058, China.

出版信息

Nucleic Acids Res. 2019 Apr 8;47(6):2996-3012. doi: 10.1093/nar/gkz105.

Abstract

Mpp10 forms a complex with Imp3 and Imp4 that serves as a core component of the ribosomal small subunit (SSU) processome. Mpp10 also interacts with the nucleolar protein Sas10/Utp3. However, it remains unknown how the Mpp10-Imp3-Imp4 complex is delivered to the nucleolus and what biological function the Mpp10-Sas10 complex plays. Here, we report that the zebrafish Mpp10 and Sas10 are conserved nucleolar proteins essential for the development of the digestive organs. Mpp10, but not Sas10/Utp3, is a target of the nucleolus-localized Def-Capn3 protein degradation pathway. Sas10 protects Mpp10 from Capn3-mediated cleavage by masking the Capn3-recognition site on Mpp10. Def interacts with Sas10 to form the Def-Sas10-Mpp10 complex to facilitate the Capn3-mediated cleavage of Mpp10. Importantly, we found that Sas10 determines the nucleolar localization of the Mpp10-Imp3-Imp4 complex. In conclusion, Sas10 is essential not only for delivering the Mpp10-Imp3-Imp4 complex to the nucleolus for assembling the SSU processome but also for fine-tuning Mpp10 turnover in the nucleolus during organogenesis.

摘要

Mpp10 与 Imp3 和 Imp4 形成复合物,作为核糖体小亚基 (SSU) 加工体的核心组件。Mpp10 还与核仁蛋白 Sas10/Utp3 相互作用。然而,Mpp10-Imp3-Imp4 复合物如何被递送到核仁以及 Mpp10-Sas10 复合物发挥什么生物学功能仍然未知。在这里,我们报告说,斑马鱼 Mpp10 和 Sas10 是核仁中保守的必需蛋白,对于消化器官的发育至关重要。Mpp10 而不是 Sas10/Utp3 是核仁定位的 Def-Capn3 蛋白降解途径的靶标。Sas10 通过掩盖 Mpp10 上的 Capn3 识别位点来保护 Mpp10 免受 Capn3 介导的切割。Def 与 Sas10 相互作用形成 Def-Sas10-Mpp10 复合物,以促进 Capn3 介导的 Mpp10 切割。重要的是,我们发现 Sas10 决定了 Mpp10-Imp3-Imp4 复合物的核仁定位。总之,Sas10 不仅对于将 Mpp10-Imp3-Imp4 复合物递送到核仁以组装 SSU 加工体是必需的,而且对于在器官发生过程中精细调节核仁中 Mpp10 的周转也是必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84c6/6451133/8aefcba4fe59/gkz105fig1.jpg

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