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The c-Myc target glycoprotein1bα links cytokinesis failure to oncogenic signal transduction pathways in cultured human cells

机译:c-Myc目标糖蛋白1bα将胞质分裂失败与培养的人细胞中的致癌信号转导途径联系起来

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摘要

An increase in chromosome number, or polyploidization, is associated with a variety of biological changes including breeding of cereal crops and flowers, terminal differentiation of specialized cells such as megakaryocytes, cellular stress and oncogenic transformation. Yet it remains unclear how cells tolerate the major changes in gene expression, chromatin organization and chromosome segregation that invariably accompany polyploidization. We show here that cancer cells can initiate increases in chromosome number by inhibiting cell division through activation of glycoprotein1b alpha (GpIbα), a component of the c-Myc signaling pathway. We are able to recapitulate cytokinesis failure in primary cells by overexpression of GpIbα in a p53-deficient background. GpIbα was found to localize to the cleavage furrow by microscopy analysis and, when overexpressed, to interfere with assembly of the cellular cortical contraction apparatus and normal division. These results indicate that cytokinesis failure and tetraploidy in cancer cells are directly linked to cellular hyperproliferation via c-Myc induced overexpression of GpIbα.© 2010 Wu et al.
机译:染色体数目的增加或多倍体化与多种生物学变化有关,包括谷物作物和花卉的繁殖,特化细胞(如巨核细胞)的终末分化,细胞应激和致癌性转化。尚不清楚细胞如何耐受多倍体化过程中基因表达,染色质组织和染色体分离的主要变化。我们在这里显示癌细胞可以通过激活糖蛋白1bα(GpIbα)(c-Myc信号通路的一个组成部分)来抑制细胞分裂,从而启动染色体数目的增加。我们能够通过在p53缺乏的背景下过量表达GpIbα来概括原代细胞的胞质分裂失败。通过显微镜分析发现GpIbα位于切割沟中,当过表达时,GpIbα会干扰细胞皮层收缩装置的组装和正常分裂。这些结果表明癌细胞的胞质分裂失败和四倍体性通过c-Myc诱导的GpIbα过表达与细胞过度增殖直接相关。©2010 Wu等。

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