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首页> 外文期刊>Molecular cell >Disease-Causing Mutations in SF3B1 Alter Splicing by Disrupting Interaction with SUGP1
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Disease-Causing Mutations in SF3B1 Alter Splicing by Disrupting Interaction with SUGP1

机译:通过破坏与SUGP1的相互作用来改变SF3B1中的疾病突变改变拼接

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SF3B1, which encodes an essential spliceosomal protein, is frequently mutated in myelodysplastic syndromes (MDS) and many cancers. However, the defect of mutant SF3B1 is unknown. Here, we analyzed RNA sequencing data from MDS patients and confirmed that SF3B1 mutants use aberrant 3' splice sites. To elucidate the underlying mechanism, we purified complexes containing either wild-type or the hotspot K700E mutant SF3B1 and found that levels of a poorly studied spliceosomal protein, SUGP1, were reduced in mutant spliceosomes. Strikingly, SUGP1 knockdown completely recapitulated the splicing errors, whereas SUGP1 overexpression drove the protein, which our data suggest plays an important role in branchsite recognition, into the mutant spliceosome and partially rescued splicing. Other hotspot SF3B1 mutants showed similar altered splicing and diminished interaction with SUGP1. Our study demonstrates that SUGP1 loss is a common defect of spliceosomes with disease-causing SF3B1 mutations and, because this defect can be rescued, suggests possibilities for therapeutic intervention.
机译:编码必要的抗乳糖蛋白蛋白的SF3B1经常在骨髓增生综合征(MDS)和许多癌症中突变。然而,突变体SF3B1的缺陷是未知的。在这里,我们分析了来自MDS患者的RNA测序数据,并证实了SF3B1突变体使用异常3'接头位点。为了阐明潜在的机制,我们纯化含有野生型或热点K700E突变体SF3B1的配合物,并发现突变抗蛋白酶体中减少了较差的抗磷酸体蛋白的水平。令人惊讶的是,SUGP1敲击完全覆盖了拼接误差,而SUGP1过表达驱动了我们的数据表明在分支石识别中发挥着重要作用的蛋白质,进入突变抗体组和部分拯救的剪接。其他热点SF3B1突变体显示出类似的改变改变的拼接和与SUGP1的相互作用减少。我们的研究表明,Sugp1损失是抗病症的常见缺陷,导致SF3B1突变,因为这种缺陷可以救出,表明治疗干预的可能性。

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