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Relaxed initiation pausing of ribosomes drives oncogenic translation

机译:轻松的启动核糖体驱动致癌的翻译

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Translation is a crucial process in cancer development and progression. Many oncogenic signaling pathways target the translation initiation stage to satisfy the increased anabolic demands of cancer cells. Using quantitative profiling of initiating ribosomes, we found that ribosomal pausing at the start codon serves as a “brake” to restrain the translational output. In response to oncogenic RAS signaling, the initiation pausing relaxes and contributes to the increased translational flux. Intriguingly, messenger RNA (mRNA) m 6 A modification in the vicinity of start codons influences the behavior of initiating ribosomes. Under oncogenic RAS signaling, the reduced mRNA methylation leads to relaxed initiation pausing, thereby promoting malignant transformation and tumor growth. Restored initiation pausing by inhibiting m 6 A demethylases suppresses RAS-mediated oncogenic translation and subsequent tumorigenesis. Our findings unveil a paradigm of translational control that is co-opted by RAS mutant cancer cells to drive malignant phenotypes.
机译:翻译是癌症发展和进展的重要过程。许多致癌信号通路靶向翻译起始阶段,以满足癌细胞的增加的合成代谢需求。使用启动核糖体的定量分析,我们发现在起始密码子上暂停核糖体暂停用作“制动器”,以限制平移输出。响应于致癌RAS信号传导,暂停引发暂停并有助于增加平移通量。有趣的,起动RNA(mRNA)M 6在起始密码子附近的修饰影响起始核糖体的行为。在致癌RAS信号下,降低的mRNA甲基化导致松弛引发暂停,从而促进恶性转化和肿瘤生长。通过抑制m 6恢复止血止止,去甲基酶抑制RAS介导的致癌性翻译和随后的肿瘤内鉴定。我们的研究结果揭示了一种平移控制的范式,该控制由Ras突变癌细胞进行共同选择,以驱动恶性表型。

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