首页> 美国卫生研究院文献>Molecular and Cellular Biology >Leukemia-Associated Nup214 Fusion Proteins Disturb the XPO1-Mediated Nuclear-Cytoplasmic Transport Pathway and Thereby the NF-κB Signaling Pathway
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Leukemia-Associated Nup214 Fusion Proteins Disturb the XPO1-Mediated Nuclear-Cytoplasmic Transport Pathway and Thereby the NF-κB Signaling Pathway

机译:白血病相关的Nup214融合蛋白干扰XPO1介导的核细胞质运输途径从而干扰NF-κB信号传导途径。

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摘要

Nuclear-cytoplasmic transport through nuclear pore complexes is mediated by nuclear transport receptors. Previous reports have suggested that aberrant nuclear-cytoplasmic transport due to mutations or overexpression of nuclear pore complexes and nuclear transport receptors is closely linked to diseases. Nup214, a component of nuclear pore complexes, has been found as chimeric fusion proteins in leukemia. Among various Nup214 fusion proteins, SET-Nup214 and DEK-Nup214 have been shown to be engaged in tumorigenesis, but their oncogenic mechanisms remain unclear. In this study, we examined the functions of the Nup214 fusion proteins by focusing on their effects on nuclear-cytoplasmic transport. We found that SET-Nup214 and DEK-Nup214 interact with exportin-1 (XPO1)/CRM1 and nuclear RNA export factor 1 (NXF1)/TAP, which mediate leucine-rich nuclear export signal (NES)-dependent protein export and mRNA export, respectively. SET-Nup214 and DEK-Nup214 decreased the XPO1-mediated nuclear export of NES proteins such as cyclin B and proteins involved in the NF-κB signaling pathway by tethering XPO1 onto nuclear dots where Nup214 fusion proteins are localized. We also demonstrated that SET-Nup214 and DEK-Nup214 expression inhibited NF-κB-mediated transcription by abnormal tethering of the complex containing p65 and its inhibitor, IκB, in the nucleus. These results suggest that SET-Nup214 and DEK-Nup214 perturb the regulation of gene expression through alteration of the nuclear-cytoplasmic transport system.
机译:通过核孔复合物的核质转运是由核转运受体介导的。先前的报道表明,由于核孔复合体和核转运受体的突变或过表达而引起的异常核胞质转运与疾病密切相关。 Nup214是核孔复合体的组成部分,已被发现是白血病中的嵌合融合蛋白。在多种Nup214融合蛋白中,SET-Nup214和DEK-Nup214已被证明参与肿瘤发生,但其致癌机制仍不清楚。在这项研究中,我们重点研究了Nup214融合蛋白对核质转运的作用。我们发现SET-Nup214和DEK-Nup214与exportin-1(XPO1)/ CRM1和核RNA出口因子1(NXF1)/ TAP相互作用,它们介导富含亮氨酸的核出口信号(NES)依赖性蛋白出口和mRNA出口。 , 分别。 SET-Nup214和DEK-Nup214通过将XPO1束缚在Nup214融合蛋白所在的核点上,从而减少了XPO1介导的NES蛋白(如细胞周期蛋白B和参与NF-κB信号传导通路的蛋白)的核输出。我们还证明了SET-Nup214和DEK-Nup214的表达通过细胞核中含有p65及其抑制剂IκB的复合物的异常束缚而抑制了NF-κB介导的转录。这些结果表明SET-Nup214和DEK-Nup214通过改变核细胞质转运系统来干扰基因表达的调节。

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