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Cancer-associated SF3B1 mutations affect alternative splicing by promoting alternative branchpoint usage

机译:癌症相关的 SF3B1 突变通过促进替代性分支点的使用而影响替代性剪接

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Hotspot mutations in the spliceosome gene SF3B1 are reported in ~20% of uveal melanomas. SF3B1 is involved in 3′-splice site (3′ss) recognition during RNA splicing; however, the molecular mechanisms of its mutation have remained unclear. Here we show, using RNA-Seq analyses of uveal melanoma, that the SF3B1 R625/K666 mutation results in deregulated splicing at a subset of junctions, mostly by the use of alternative 3′ss. Modelling the differential junctions in SF3B1 WT and SF3B1 R625/K666 cell lines demonstrates that the deregulated splice pattern strictly depends on SF3B1 status and on the 3’ss-sequence context. SF3B1WT knockdown or overexpression do not reproduce the SF3B1 R625/K666 splice pattern, qualifying SF3B1 R625/K666 as change-of-function mutants. Mutagenesis of predicted branchpoints reveals that the SF3B1 R625/K666-promoted splice pattern is a direct result of alternative branchpoint usage. Altogether, this study provides a better understanding of the mechanisms underlying splicing alterations induced by mutant SF3B1 in cancer, and reveals a role for alternative branchpoints in disease.
机译:葡萄膜黑色素瘤中约有20%报道了剪接体基因SF3B1的热点突变。 SF3B1在RNA剪接过程中参与3'-剪接位点(3'ss)的识别;然而,其突变的分子机制仍不清楚。在这里,我们使用葡萄膜黑色素瘤的RNA-Seq分析显示,SF3B1 R625 / K666 突变导致连接子集的剪接受到限制,主要是通过使用3's替代。对SF3B1 WT 和SF3B1 R625 / K666 细胞系中的差分连接进行建模,表明去调控的剪接模式严格取决于SF3B1的状态和3’ss序列的上下文。 SF3B1 WT 的敲低或过表达不会复制SF3B1 R625 / K666 的拼接模式,从而使SF3B1 R625 / K666 成为功能改变的突变体。预测分支点的诱变表明,SF3B1 R625 / K666 促进的剪接模式是替代分支点使用的直接结果。总而言之,这项研究更好地理解了突变体SF3B1在癌症中诱导的剪接改变的潜在机制,并揭示了疾病中其他分支点的作用。

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