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Functional Interactions between BM88/Cend1 Ran-Binding Protein M and Dyrk1B Kinase Affect Cyclin D1 Levels and Cell Cycle Progression/Exit in Mouse Neuroblastoma Cells

机译:小鼠神经母细胞瘤细胞中BM88 / Cend1Ran结合蛋白M和Dyrk1B激酶之间的功能相互作用影响细胞周期蛋白D1水平和细胞周期进行/退出。

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摘要

BM88/Cend1 is a neuronal-lineage specific modulator with a pivotal role in coordination of cell cycle exit and differentiation of neuronal precursors. In the current study we identified the signal transduction scaffolding protein Ran-binding protein M (RanBPM) as a BM88/Cend1 binding partner and showed that BM88/Cend1, RanBPM and the dual specificity tyrosine-phosphorylation regulated kinase 1B (Dyrk1B) are expressed in mouse brain as well as in cultured embryonic cortical neurons while RanBPM can form complexes with either of the two other proteins. To elucidate a potential mechanism involving BM88/Cend1, RanBPM and Dyrk1B in cell cycle progression/exit, we transiently co-expressed these proteins in mouse neuroblastoma Neuro 2a cells. We found that the BM88/Cend1-dependent or Dyrk1B-dependent down-regulation of cyclin D1 is reversed following their functional interaction with RanBPM. More specifically, functional interaction of RanBPM with either BM88/Cend1 or Dyrk1B stabilizes cyclin D1 in the nucleus and promotes 5-bromo-2'-deoxyuridine (BrdU) incorporation as a measure of enhanced cell proliferation. However, the RanBPM-dependent Dyrk1B cytosolic retention and degradation is reverted in the presence of Cend1 resulting in cyclin D1 destabilization. Co-expression of RanBPM with either BM88/Cend1 or Dyrk1B also had a negative effect on Neuro 2a cell differentiation. Our results suggest that functional interactions between BM88/Cend1, RanBPM and Dyrk1B affect the balance between cellular proliferation and differentiation in Neuro 2a cells and indicate that a potentially similar mechanism may influence cell cycle progression/exit and differentiation of neuronal precursors.
机译:BM88 / Cend1是一种神经元谱系特异性调节剂,在细胞周期退出和神经元前体分化的协调中起关键作用。在本研究中,我们确定了信号转导支架蛋白Ran结合蛋白M(RanBPM)为BM88 / Cend1结合伴侣,并显示BM88 / Cend1,RanBPM和酪氨酸磷酸化双重调控激酶1B(Dyrk1B)在小鼠大脑以及培养的胚胎皮质神经元,而RanBPM可以与其他两种蛋白质形成复合物。为了阐明在细胞周期进展/退出中涉及BM88 / Cend1,RanBPM和Dyrk1B的潜在机制,我们在小鼠神经母细胞瘤Neuro 2a细胞中瞬时共表达了这些蛋白。我们发现,细胞周期蛋白D1的BM88 / Cend1依赖性或Dyrk1B依赖性下调与RanBPM相互作用后被逆转。更具体地说,RanBPM与BM88 / Cend1或Dyrk1B的功能相互作用可稳定细胞核中的细胞周期蛋白D1,并促进5-溴-2'-脱氧尿苷(BrdU)的掺入,以此作为增强细胞增殖的手段。但是,依赖RanBPM的Dyrk1B胞质保留和降解在Cend1存在的情况下得以恢复,从而导致细胞周期蛋白D1不稳定。 RanBPM与BM88 / Cend1或Dyrk1B的共表达对Neuro 2a细胞分化也有负面影响。我们的结果表明,BM88 / Cend1,RanBPM和Dyrk1B之间的功能性相互作用会影响Neuro 2a细胞中细胞增殖与分化之间的平衡,并表明潜在的相似机制可能会影响细胞周期的进展/退出和神经元前体的分化。

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