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Disruption of SF3B1 results in deregulated expression and splicing of key genes and pathways in myelodysplastic syndrome hematopoietic stem and progenitor cells

机译:SF3B1的破坏导致骨髓增生异常综合症造血干细胞和祖细胞中关键基因和途径的表达失调和剪接

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摘要

The splicing factor SF3B1 is the most commonly mutated gene in the myelodysplastic syndrome (MDS), particularly in patients with refractory anemia with ring sideroblasts (RARS). We investigated the functional effects of SF3B1 disruption in myeloid cell lines: SF3B1 knockdown resulted in growth inhibition, cell cycle arrest and impaired erythroid differentiation and deregulation of many genes and pathways, including cell cycle regulation and RNA processing. MDS is a disorder of the hematopoietic stem cell and we thus studied the transcriptome of CD34+ cells from MDS patients with SF3B1 mutations using RNA sequencing. Genes significantly differentially expressed at the transcript and/or exon level in SF3B1 mutant compared with wild-type cases include genes that are involved in MDS pathogenesis (ASXL1 and CBL), iron homeostasis and mitochondrial metabolism (ALAS2, ABCB7 and SLC25A37) and RNA splicing/processing (PRPF8 and HNRNPD). Many genes regulated by a DNA damage-induced BRCA1–BCLAF1–SF3B1 protein complex showed differential expression/splicing in SF3B1 mutant cases. This is the first study to determine the target genes of SF3B1 mutation in MDS CD34+ cells. Our data indicate that SF3B1 has a critical role in MDS by affecting the expression and splicing of genes involved in specific cellular processes/pathways, many of which are relevant to the known RARS pathophysiology, suggesting a causal link.
机译:剪接因子SF3B1是骨髓增生异常综合症(MDS)中最常见的突变基因,尤其是在患有环状铁粒母细胞(RARS)的难治性贫血患者中。我们研究了髓样细胞系中SF3B1破坏的功能作用:SF3B1敲低导致生长抑制,细胞周期停滞和红系分化受损以及许多基因和途径的失调,包括细胞周期调控和RNA加工。 MDS是造血干细胞的疾病,因此我们使用RNA测序研究了SF3B1突变的MDS患者的CD34 + 细胞的转录组。与野生型病例相比,SF3B1突变体在转录本和/或外显子水平上显着差异表达的基因包括与MDS发病机理(ASXL1和CBL),铁稳态和线粒体代谢(ALAS2,ABCB7和SLC25A37)和RNA剪接有关的基因。 /处理(PRPF8和HNRNPD)。由DNA损伤诱导的BRCA1-BCLAF1-SF3B1蛋白复合物调控的许多基因在SF3B1突变病例中表现出差异表达/剪接。这是确定MDS CD34 + 细胞中SF3B1突变目标基因的第一项研究。我们的数据表明,SF3B1通过影响特定细胞过程/途径中涉及的基因的表达和剪接,在MDS中起关键作用,其中许多与已知的RARS病理生理学相关,表明存在因果关系。

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