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Translationally controlled tumor protein interacts with nucleophosmin during mitosis in ES cells.

机译:在ES细胞的有丝分裂过程中,翻译控制的肿瘤蛋白与核磷脂相互作用。

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摘要

Somatic cell nuclear transfers and the generation of induced pluripotent stem cells provide potential routes towards non-immunogenic cell replacement therapies. Translationally controlled tumor protein (Tpt1) was recently suggested to regulate cellular pluripotency. Here we explore functions of Tpt1 in mouse embryonic stem (ES) cells. We find that Tpt1 is present in the nucleus and cytoplasm of ES cells, and that specifically nuclear Tpt1 decreases upon cell differentiation. We also find that endogenous Tpt1 forms a complex with endogenous nucleophosminucleoplasmin family member 1 (Npm1) in a cell cycle dependent manner. The Tpt1-Npm1 complex peaks sharply during mitosis and is independent of phosphorylation by Polo-like kinase. Differentiation by retinoic acid decreases Tpt1-Npm1 complex levels. Moreover, Tpt1 knock-down or overexpression reduces proliferation whereas Npm1 overexpression increases proliferation in ES cells. Cells depleted for both Tpt1 and Npm1 exhibit significantly reduced proliferation compared to cells depleted for Tpt1 or Npm1 alone, whereas cells overexpressing both Tpt1 and Npm1 show normal proliferation. Our findings reveal a role for the Tpt1-Npm1 complex in cell proliferation and identify the Tpt1-Npm1 complex as a potential biomarker for mitotic ES cells.
机译:体细胞核转移和诱导性多能干细胞的产生提供了通往非免疫原性细胞替代疗法的潜在途径。最近建议翻译控制肿瘤蛋白(Tpt1)调节细胞多能性。在这里,我们探讨了Tpt1在小鼠胚胎干(ES)细胞中的功能。我们发现,Tpt1存在于ES细胞的细胞核和胞质中,并且随着细胞的分化,特定的核Tpt1会减少。我们还发现内源性Tpt1以细胞周期依赖性方式与内源性核磷素/核纤溶酶家族成员1(Npm1)形成复合体。 Tpt1-Npm1复合物在有丝分裂过程中急剧尖峰,与Polo样激酶的磷酸化无关。视黄酸的分化降低了Tpt1-Npm1复合物的水平。此外,Tpt1敲低或过表达减少增殖,而Npm1过表达增加ES细胞的增殖。与仅消耗Tpt1或Npm1的细胞相比,消耗Tpt1和Npm1的细胞均显示出明显降低的增殖,而过表达Tpt1和Npm1的细胞均显示正常增殖。我们的发现揭示了Tpt1-Npm1复合物在细胞增殖中的作用,并将Tpt1-Npm1复合物鉴定为有丝分裂ES细胞的潜在生物标记。

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