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Regulation of the Anaphase-promoting Complex-Separase Cascade by Transforming Growth Factor-beta Modulates Mitotic Progression in Bone Marrow Stromal Cells

机译:通过转化生长因子-β促进后期分离的复杂分离酶级联调节调节骨髓基质细胞的有丝分裂进程。

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Alteration of the tumor microenvironment by aberrant stromal cells influences many aspects of cell biology, including differentiation of stem cells and tumor metastasis. The role of transforming growth factor (TGF)-beta signaling in stromal cells of the tissue microenvironment is critical to both pathways. We examined murine marrow stromal cells with deletion of Smad3 and found that they have an altered cell cycle profile, with a higher fraction of cells in G2/M phase. Deletion of Smad3 significantly abrogates TGF-beta signaling and suppresses phosphorylation of CDC27-anaphase-promoting complex (APC) during mitosis, thereby resulting in elevated cyclin-dependent kinase (CDK)1 activity via increased levels of cyclin B. Enhanced CDK1 activity due to deregulation of APC leads in turn to hyperphosphorylation of separase, impeding chromatid separation. A residue Ser1126Ala mutation in separase specifically abolished separase hyperphosphorylation in Smad3-deficient cells. The present results unveil a new function for the TGF-beta pathway in the regulation of APC to mediate chromatid separation during mitosis.
机译:异常基质细胞对肿瘤微环境的改变会影响细胞生物学的许多方面,包括干细胞的分化和肿瘤转移。在组织微环境的基质细胞中转化生长因子(TGF)-β信号传导的作用对于这两种途径都至关重要。我们检查了具有Smad3缺失的小鼠骨髓基质细胞,发现它们具有改变的细胞周期谱,在G2 / M期细胞比例更高。 Smad3的缺失可显着消除TGF-β信号转导并抑制有丝分裂过程中CDC27后期促进复合物(APC)的磷酸化,从而通过增加细胞周期蛋白B的水平而导致细胞周期蛋白依赖性激酶(CDK)1活性升高。 APC的失调会导致Separase的过度磷酸化,从而阻止染色单体的分离。分离酶中的残基Ser1126Ala突变特别消除了Smad3缺陷细胞中的分离酶过磷酸化作用。目前的结果揭示了TGF-β途径在调节APC介导有丝分裂期间染色单体分离中的新功能。

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