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Nuclear pore protein NUP88 activates anaphase-promoting complex to promote aneuploidy

机译:核孔蛋白NUP88激活后期促进复合物以促进非整倍性

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The nuclear pore complex protein NUP88 is frequently elevated in aggressive human cancers and correlates with reduced patient survival; however, it is unclear whether and how NUP88 overexpression drives tumorigenesis. Here, we show that mice overexpressing NUP88 are cancer prone and form intestinal tumors. To determine whether overexpression of NUP88 drives tumorigenesis, we engineered transgenic mice with doxycycline-inducible expression of Nup88 . Surprisingly, NUP88 overexpression did not alter global nuclear transport, but was a potent inducer of aneuploidy and chromosomal instability. We determined that NUP88 and the nuclear transport factors NUP98 and RAE1 comprise a regulatory network that inhibits premitotic activity of the anaphase-promoting complex/cyclosome (APC/C). When overexpressed, NUP88 sequesters NUP98-RAE1 away from APC/C~(CDH1), triggering proteolysis of polo-like kinase 1 (PLK1), a tumor suppressor and multitasking mitotic kinase. Premitotic destruction of PLK1 disrupts centrosome separation, causing mitotic spindle asymmetry, merotelic microtubule-kinetochore attachments, lagging chromosomes, and aneuploidy. These effects were replicated by PLK1 insufficiency, indicating that PLK1 is responsible for the mitotic defects associated with NUP88 overexpression. These findings demonstrate that the NUP88-NUP98-RAE1-APC/C~(CDH1) axis contributes to aneuploidy and suggest that it may be deregulated in the initiating stages of a broad spectrum of human cancers.
机译:在侵略性人类癌症中,核孔复合蛋白NUP88经常升高,并且与患者生存期降低有关。然而,尚不清楚NUP88是否过表达以及如何过表达驱动肿瘤发生。在这里,我们显示过表达NUP88的小鼠易患癌症并形成肠道肿瘤。为了确定NUP88的过表达是否驱动肿瘤发生,我们设计了具有强力霉素诱导的Nup88表达的转基因小鼠。出乎意料的是,NUP88的过表达并没有改变总体核转运,而是非整倍性和染色体不稳定的有效诱因。我们确定NUP88和核转运因子NUP98和RAE1包含一个调节网络,该网络抑制后期促进复合物/环体(APC / C)的有丝分裂活性。当过表达时,NUP88将NUP98-RAE1与APC / C〜(CDH1)隔离,从而触发polo样激酶1(PLK1)的蛋白水解,这是一种肿瘤抑制因子和多任务有丝分裂激酶。 PLK1的有丝分裂破坏破坏了中心体分离,导致了有丝分裂纺锤体不对称,介导的微管-线粒体附着,染色体滞后和非整倍性。 PLK1功能不全复制了这些效应,表明PLK1负责与NUP88过表达相关的有丝分裂缺陷。这些发现表明,NUP88-NUP98-RAE1-APC / C〜(CDH1)轴有助于非整倍性,并表明它可能在人类多种癌症的起始阶段被放松调节。

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