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人依赖帽子的 48S 翻译起始复合物的结构。

Structure of a human cap-dependent 48S translation pre-initiation complex.

机构信息

European Molecular Biology Laboratory, Grenoble Outstation, 71 Avenue des Martyrs, 38042 Grenoble, France.

ETH Zürich, Institute of Molecular Systems Biology, Auguste-Piccard-Hof 1, 8093 Zürich, Switzerland.

出版信息

Nucleic Acids Res. 2018 Mar 16;46(5):2678-2689. doi: 10.1093/nar/gky054.

Abstract

Eukaryotic translation initiation is tightly regulated, requiring a set of conserved initiation factors (eIFs). Translation of a capped mRNA depends on the trimeric eIF4F complex and eIF4B to load the mRNA onto the 43S pre-initiation complex comprising 40S and initiation factors 1, 1A, 2, 3 and 5 as well as initiator-tRNA. Binding of the mRNA is followed by mRNA scanning in the 48S pre-initiation complex, until a start codon is recognised. Here, we use a reconstituted system to prepare human 48S complexes assembled on capped mRNA in the presence of eIF4B and eIF4F. The highly purified h-48S complexes are used for cross-linking/mass spectrometry, revealing the protein interaction network in this complex. We report the electron cryo-microscopy structure of the h-48S complex at 6.3 Å resolution. While the majority of eIF4B and eIF4F appear to be flexible with respect to the ribosome, additional density is detected at the entrance of the 40S mRNA channel which we attribute to the RNA-recognition motif of eIF4B. The eight core subunits of eIF3 are bound at the 40S solvent-exposed side, as well as the subunits eIF3d, eIF3b and eIF3i. elF2 and initiator-tRNA bound to the start codon are present at the 40S intersubunit side. This cryo-EM structure represents a molecular snap-shot revealing the h-48S complex following start codon recognition.

摘要

真核生物翻译起始受到严格调控,需要一套保守的起始因子(eIF)。帽状 mRNA 的翻译依赖于三聚体 eIF4F 复合物和 eIF4B 将 mRNA 加载到由 40S 和起始因子 1、1A、2、3 和 5 以及起始 tRNA 组成的 43S 起始前复合物上。mRNA 结合后,在 48S 起始前复合物中进行 mRNA 扫描,直到识别到起始密码子。在这里,我们使用重组系统在 eIF4B 和 eIF4F 的存在下制备在帽状 mRNA 上组装的人 48S 复合物。高度纯化的 h-48S 复合物用于交联/质谱分析,揭示了该复合物中的蛋白质相互作用网络。我们报告了分辨率为 6.3Å 的 h-48S 复合物的电子 cryo-EM 结构。虽然 eIF4B 和 eIF4F 的大部分似乎相对于核糖体具有柔韧性,但在 40S mRNA 通道的入口处检测到额外的密度,我们将其归因于 eIF4B 的 RNA 识别基序。eIF3 的八个核心亚基结合在 40S 溶剂暴露侧,以及亚基 eIF3d、eIF3b 和 eIF3i。结合在起始密码子上的 eIF2 和起始 tRNA 位于 40S 亚基间侧。该 cryo-EM 结构代表了一个分子快照,揭示了起始密码子识别后的 h-48S 复合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff6b/5861459/8d0cacb2376a/gky054fig1.jpg

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