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非依赖 eIF4E 的翻译在很大程度上依赖于 eIF3d。

eIF4E-independent translation is largely eIF3d-dependent.

机构信息

German Cancer Research Center (DKFZ) Heidelberg, Heidelberg, Germany.

Faculty of Medicine, Heidelberg University, Heidelberg, Germany.

出版信息

Nat Commun. 2024 Aug 6;15(1):6692. doi: 10.1038/s41467-024-51027-z.

Abstract

Translation initiation is a highly regulated step needed for protein synthesis. Most cell-based mechanistic work on translation initiation has been done using non-stressed cells growing in medium with sufficient nutrients and oxygen. This has yielded our current understanding of 'canonical' translation initiation, involving recognition of the mRNA cap by eIF4E1 followed by successive recruitment of initiation factors and the ribosome. Many cells, however, such as tumor cells, are exposed to stresses such as hypoxia, low nutrients or proteotoxic stress. This leads to inactivation of mTORC1 and thereby inactivation of eIF4E1. Hence the question arises how cells translate mRNAs under such stress conditions. We study here how mRNAs are translated in an eIF4E1-independent manner by blocking eIF4E1 using a constitutively active version of eIF4E-binding protein (4E-BP). Via ribosome profiling we identify a subset of mRNAs that are still efficiently translated when eIF4E1 is inactive. We find that these mRNAs preferentially release eIF4E1 when eIF4E1 is inactive and bind instead to eIF3d via its cap-binding pocket. eIF3d then enables these mRNAs to be efficiently translated due to its cap-binding activity. In sum, our work identifies eIF3d-dependent translation as a major mechanism enabling mRNA translation in an eIF4E-independent manner.

摘要

翻译起始是蛋白质合成所需的高度调控步骤。大多数基于细胞的翻译起始机制研究都是在营养物质和氧气充足的培养基中生长的非应激细胞中进行的。这使得我们目前对“经典”翻译起始的理解,涉及到 eIF4E1 对 mRNA 帽的识别,随后是起始因子和核糖体的连续募集。然而,许多细胞,如肿瘤细胞,会受到缺氧、营养物质不足或蛋白毒性应激等压力的影响。这导致 mTORC1 失活,从而导致 eIF4E1 失活。因此,问题出现了,细胞在这种应激条件下如何翻译 mRNA。我们在这里研究了如何通过使用 eIF4E 结合蛋白(4E-BP)的组成激活形式来阻断 eIF4E1,从而以 eIF4E1 独立的方式翻译 mRNA。通过核糖体谱分析,我们确定了一组在 eIF4E1 失活时仍能有效翻译的 mRNA。我们发现,这些 mRNA 在 eIF4E1 失活时优先释放 eIF4E1,然后通过其帽结合口袋与 eIF3d 结合。eIF3d 然后通过其帽结合活性使这些 mRNA 能够有效地翻译。总之,我们的工作确定了 eIF3d 依赖性翻译是一种主要的机制,使 mRNA 能够以 eIF4E1 独立的方式进行翻译。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04bb/11303786/8022777165c2/41467_2024_51027_Fig1_HTML.jpg

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