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Codon misreading tRNAs promote tumor growth in mice

机译:密码子误读TRNA促进小鼠肿瘤生长

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摘要

Deregulation of tRNAs, aminoacyl-tRNA synthetases and tRNA modifying enzymes are common in cancer, raising the hypothesis that protein synthesis efficiency and accuracy (mistranslation) are compromised in tumors. We show here that human colon tumors and xenograft tumors produced in mice by two epithelial cancer cell lines mistranslate 2- to 4-fold more frequently than normal tissue. To clarify if protein mistranslation plays a role in tumor biology, we expressed mutant Ser-tRNAs that misincorporate Ser-at-Ala (frequent error) and Ser-at-Leu (infrequent error) in NIH3T3 cells and investigated how they responded to the proteome instability generated by the amino acid misincorporations. There was high tolerance to both misreading tRNAs, but the Ser-to-Ala misreading tRNA was a more potent inducer of cell transformation, stimulated angiogenesis and produced faster growing tumors in mice than the Ser-to-Leu misincorporating tRNA. Upregulation of the Akt pathway and the UPR were also observed. Most surprisingly, the relative expression of both misreading tRNAs increased during tumor growth, suggesting that protein mistranslation is advantageous in cancer contexts. These data highlight new features of protein synthesis deregulation in tumor biology.
机译:TrNA的放松管腔,氨基酰基-TRNA合成酶和TRNA改性酶在癌症中是常见的,提高蛋白质合成效率和准确度(isrransation)在肿瘤中受到损害的假设。在这里,我们在这里展示了通过两种上皮癌细胞系在小鼠中产生的人结肠肿瘤和异种移植肿瘤,比正常组织更频繁地递送2-至4倍。为了澄清蛋白质递除在肿瘤生物学中发挥作用,我们表达了在NIH3T3细胞中掺入的Ser-AT-ALA(频繁误差)和Ser-AT-Leu(罕见错误)中的突变体Ser-TrNA表达了突变体Ser-TrNA,并研究了它们如何应对蛋白质组由氨基酸的MISINCORNATION产生的不稳定性。误读TRNA具有很高的耐受性,但Ser-to-Ala误读TRNA是细胞转化,刺激的血管生成的更有效的诱导剂,并在小鼠中产生比Ser-to-Leu MiSclating TRNA更快地生长肿瘤。还观察到AKT途径的上调和UPR。最令人惊讶的是,误读TrNA的相对表达在肿瘤生长期间增加,表明蛋白质递除在癌症环境中是有利的。这些数据突出了肿瘤生物学蛋白质合成放松管制的新特征。

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