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首页> 外文期刊>Cell Proliferation >Lineage specific composition of cyclin D-CDK4/CDK6-p27 complexes reveals distinct functions of CDK4, CDK6 and individual D-type cyclins in differentiating cells of embryonic origin.
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Lineage specific composition of cyclin D-CDK4/CDK6-p27 complexes reveals distinct functions of CDK4, CDK6 and individual D-type cyclins in differentiating cells of embryonic origin.

机译:细胞周期蛋白D-CDK4 / CDK6-p27复合物的谱系特异性组成揭示了胚胎来源的分化细胞中CDK4,CDK6和各个D型细胞周期蛋白的独特功能。

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OBJECTIVES: This article is to study the role of G(1)/S regulators in differentiation of pluripotent embryonic cells. MATERIALS AND METHODS: We established a P19 embryonal carcinoma cell-based experimental system, which profits from two similar differentiation protocols producing endodermal or neuroectodermal lineages. The levels, mutual interactions, activities, and localization of G(1)/S regulators were analysed with respect to growth and differentiation parameters of the cells. RESULTS AND CONCLUSIONS: We demonstrate that proliferation parameters of differentiating cells correlate with the activity and structure of cyclin A/E-CDK2 but not of cyclin D-CDK4/6-p27 complexes. In an exponentially growing P19 cell population, the cyclin D1-CDK4 complex is detected, which is replaced by cyclin D2/3-CDK4/6-p27 complex following density arrest. During endodermal differentiation kinase-inactive cyclin D2/D3-CDK4-p27 complexes are formed. Neural differentiation specifically induces cyclin D1 at the expense of cyclin D3 and results in predominant formation of cyclin D1/D2-CDK4-p27 complexes. Differentiation is accompanied by cytoplasmic accumulation of cyclin Ds and CDK4/6, which in neural cells are associated with neural outgrowths. Most phenomena found here can be reproduced in mouse embryonic stem cells. In summary, our data demonstrate (i) that individual cyclin D isoforms are utilized in cells lineage specifically, (ii) that fundamental difference in the function of CDK4 and CDK6 exists, and (iii) that cyclin D-CDK4/6 complexes function in the cytoplasm of differentiated cells. Our study unravels another level of complexity in G(1)/S transition-regulating machinery in early embryonic cells.
机译:目的:本文旨在研究G(1)/ S调节剂在多能胚胎细胞分化中的作用。材料和方法:我们建立了一个基于P19胚胎癌细胞的实验系统,该系统可从产生内胚层或神经外胚层谱系的两种相似分化方案中受益。有关细胞的生长和分化参数,分析了G(1)/ S调节剂的水平,相互作用,活性和本地化。结果与结论:我们证明分化细胞的增殖参数与细胞周期蛋白A / E-CDK2的活性和结构相关,而与细胞周期蛋白D-CDK4 / 6-p27复合物无关。在呈指数增长的P19细胞群中,检测到细胞周期蛋白D1-CDK4复合物,在密度停滞后被细胞周期蛋白D2 / 3-CDK4 / 6-p27复合物取代。在内胚层分化过程中,形成激酶失活的细胞周期蛋白D2 / D3-CDK4-p27复合物。神经分化以细胞周期蛋白D3为代价特异性诱导细胞周期蛋白D1,并导致细胞周期蛋白D1 / D2-CDK4-p27复合物的主要形成。分化伴随有细胞周期蛋白Ds和CDK4 / 6的细胞质积累,其在神经细胞中与神经生长相关。此处发现的大多数现象都可以在小鼠胚胎干细胞中复制。总而言之,我们的数据表明(i)具体的细胞周期中利用了单独的细胞周期蛋白D同工型,(ii)CDK4和CDK6的功能存在根本差异,并且(iii)细胞周期蛋白D-CDK4 / 6复合物在分化细胞的细胞质。我们的研究揭示了早期胚胎细胞中G(1)/ S过渡调控机制的另一个复杂程度。

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