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Nmd3 is a structural mimic of eIF5A and activates the cpGTPase Lsg1 during 60S ribosome biogenesis

机译:Nmd3是eIF5A的结构模拟物并在60S核糖体生物发生过程中激活cpGTPase Lsg1。

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摘要

During ribosome biogenesis in eukaryotes, nascent subunits are exported to the cytoplasm in a functionally inactive state. 60S subunits are activated through a series of cytoplasmic maturation events. The last known events in the cytoplasm are the release of Tif6 by Efl1 and Sdo1 and the release of the export adapter, Nmd3, by the GTPase Lsg1. Here, we have used cryo‐electron microscopy to determine the structure of the 60S subunit bound by Nmd3, Lsg1, and Tif6. We find that a central domain of Nmd3 mimics the translation elongation factor eIF5A, inserting into the E site of the ribosome and pulling the L1 stalk into a closed position. Additional domains occupy the P site and extend toward the sarcin–ricin loop to interact with Tif6. Nmd3 and Lsg1 together embrace helix 69 of the B2a intersubunit bridge, inducing base flipping that we suggest may activate the GTPase activity of Lsg1.
机译:在真核生物的核糖体生物发生过程中,新生的亚基以功能失活的状态输出到细胞质。 60S亚基通过一系列细胞质成熟事件被激活。细胞质中最后已知的事件是Efl1和Sdo1释放Tif6,GTPase Lsg1释放输出衔接子Nmd3。在这里,我们使用了冷冻电子显微镜来确定由Nmd3,Lsg1和Tif6结合的60S亚基的结构。我们发现,Nmd3的中央结构域模仿翻译延伸因子eIF5A,插入核糖体的E位点并将L1茎拉到关闭位置。其他结构域占据P位点,并延伸至sarcin-ricin环以与Tif6相互作用。 Nmd3和Lsg1一起拥抱B2a亚基桥的螺旋线69,诱导碱基翻转,我们认为这可能激活Lsg1的GTPase活性。

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