RNA-binding protein FXR1 drives cMYC translation by recruiting eIF4F complex to the translation start site

RNA结合蛋白FXR1通过将eIF4F复合物募集到翻译起始位点来驱动cMYC翻译。

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作者:Jasmine George ,Yongsheng Li ,Ishaque P Kadamberi ,Deepak Parashar ,Shirng-Wern Tsaih ,Prachi Gupta ,Anjali Geethadevi ,Changliang Chen ,Chandrima Ghosh ,Yunguang Sun ,Sonam Mittal ,Ramani Ramchandran ,Hallgeir Rui ,Gabriel Lopez-Berestein ,Cristian Rodriguez-Aguayo ,Gustavo Leone ,Janet S Rader ,Anil K Sood ,Madhusudan Dey ,Sunila Pradeep ,Pradeep Chaluvally-Raghavan

Abstract

Fragile X-related protein-1 (FXR1) gene is highly amplified in patients with ovarian cancer, and this amplification is associated with increased expression of both FXR1 mRNA and protein. FXR1 expression directly associates with the survival and proliferation of cancer cells. Surface sensing of translation (SUnSET) assay demonstrates that FXR1 enhances the overall translation in cancer cells. Reverse-phase protein array (RPPA) reveals that cMYC is the key target of FXR1. Mechanistically, FXR1 binds to the AU-rich elements (ARE) present within the 3' untranslated region (3'UTR) of cMYC and stabilizes its expression. In addition, the RGG domain in FXR1 interacts with eIF4A1 and eIF4E proteins. These two interactions of FXR1 result in the circularization of cMYC mRNA and facilitate the recruitment of eukaryotic translation initiation factors to the translation start site. In brief, we uncover a mechanism by which FXR1 promotes cMYC levels in cancer cells. Keywords: ARE; CNV; EIF4F; FXR1; SUnSET; cMYC; eIFs; mRNA circularization; ovarian cancer; translation.

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