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首页> 外文期刊>Nucleic Acids Research >Re-splicing of mature mRNA in cancer cells promotes activation of distant weak alternative splice sites
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Re-splicing of mature mRNA in cancer cells promotes activation of distant weak alternative splice sites

机译:癌细胞中成熟mRNA的重新拼接促进远处弱的可变剪接位点的激活

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摘要

Transcripts of the human tumor susceptibility gene 101 (TSG101) are aberrantly spliced in many cancers. A major aberrant splicing event on the TSG101 pre-mRNA involves joining of distant alternative 5′ and 3′ splice sites within exon 2 and exon 9, respectively, resulting in the extensive elimination of the mRNA. The estimated strengths of the alternative splice sites are much lower than those of authentic splice sites. We observed that the equivalent aberrant mRNA could be generated from an intron-less TSG101 gene expressed ectopically in breast cancer cells. Remarkably, we identified a pathway-specific endogenous lariat RNA consisting solely of exonic sequences, predicted to be generated by a re-splicing between exon 2 and exon 9 on the spliced mRNA. Our results provide evidence for a two-step splicing pathway in which the initial constitutive splicing removes all 14 authentic splice sites, thereby bringing the weak alternative splice sites into close proximity. We also demonstrate that aberrant multiple-exon skipping of the fragile histidine triad (FHIT) pre-mRNA in cancer cells occurs via re-splicing of spliced FHIT mRNA. The re-splicing of mature mRNA can potentially generate mutation-independent diversity in cancer transcriptomes. Conversely, a mechanism may exist in normal cells to prevent potentially deleterious mRNA re-splicing events.
机译:人类肿瘤易感基因101(TSG101)的转录本被异常剪接在许多癌症中。 TSG101 pre-mRNA上的主要异常剪接事件涉及分别连接外显子2和外显子9内遥远的替代5'和3'剪接位点,从而导致mRNA的广泛消除。替代的剪接位点的估计强度远低于真实的剪接位点。我们观察到,等效异常mRNA可以从在乳腺癌细胞中异位表达的无内含子的TSG101基因产生。值得注意的是,我们鉴定了仅由外显子序列组成的途径特异性内源套索RNA,预计是通过剪接的mRNA的外显子2和外显子9之间的重新剪接而产生的。我们的结果为两步拼接途径提供了证据,其中最初的本构拼接会删除所有14个真实的拼接位点,从而使较弱的替代拼接位点紧密靠近。我们还证明了在癌细胞中易碎的组氨酸三联体(FHIT)pre-mRNA异常的多外显子跳跃是通过剪接的FHIT mRNA重新剪接而发生的。成熟mRNA的重新拼接可能会在癌症转录组中产生不依赖突变的多样性。相反,正常细胞中可能存在一种机制,以防止潜在的有害mRNA重新剪接事件。

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