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首页> 外文期刊>American Journal of Physiology >Caco-2 intestinal cell differentiation is associated with G1 arrest and suppression of CDK2 and CDK4 (see comments)
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Caco-2 intestinal cell differentiation is associated with G1 arrest and suppression of CDK2 and CDK4 (see comments)

机译:Caco-2肠细胞分化与G1阻滞和CDK2和CDK4抑制有关(请参阅评论)

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The cellular mechanisms regulating intestinal proliferation and differentiation remain largely undefined. Previously, we showed an early induction of the cyclin-dependent kinase (CDK) inhibitor p21(Waf1/Cip1) in Caco-2 cells, a human colon cancer line that spontaneously differentiates into a small bowel phenotype. The purpose of our present study was to assess the timing of cell cycle arrest in relation to differentiation in Caco-2 cells and to examine the mechanisms responsible for CDK inactivation. Caco-2 cells undergo a relative G1/S block and cease to proliferate at day 3 postconfluency; an increase in the activity of terminally differentiated brush-border enzymes (sucrase and alkaline phosphatase) was noted at day 6 postconfluency. Cell cycle block was associated with suppression of both CDK2 and CDK4 activities, which are important for G1/S progression. Treatment of the CDK immune complexes with the detergent deoxycholate (DOC) resulted in restoration of CDK2, but not CDK4, activity at day 3 postconfluency, suggesting the presence of inhibitory protein(s) binding to the cyclin/CDK2 complex at this time point. An increased binding of p21(Waf1/Cip1) to CDK2 complexes at day 3 postconfluency was noted, suggesting a potential role for p21(Waf1/Cip1) in CDK2 inactivation; however, immunodepletion of p21(Waf1/Cip1) from Caco-2 protein extracts demonstrated that p21(Waf1/Cip1) is only partially responsible for CDK2 suppression at day 3 postconfluency. A decrease in the cyclin E/CDK2 complex appears to contribute to the CDK2 inactivation noted at days 6 and 12 postconfluency. Taken together, our results suggest that multiple mechanisms contribute to CDK suppression during Caco-2 cell differentiation. Inhibition of CDK2 and CDK4 leads to G1 arrest and inhibition of proliferation that precede Caco-2 cell differentiation.
机译:调节肠道增殖和分化的细胞机制仍然不清楚。以前,我们显示了在Caco-2细胞中早期诱导的细胞周期蛋白依赖性激酶(CDK)抑制剂p21(Waf1 / Cip1),这是一种人结肠癌系,自发分化为小肠表型。我们本研究的目的是评估与Caco-2细胞分化有关的细胞周期停滞的时机,并研究导致CDK失活的机制。 Caco-2细胞经历相对的G1 / S阻滞,并在融合后第3天停止增殖。在汇合后第6天,发现末端分化的刷状边界酶(蔗糖酶和碱性磷酸酶)的活性增加。细胞周期阻滞与抑制CDK2和CDK4活性有关,这对G1 / S进程很重要。用去氧胆酸去污剂(DOC)处理CDK免疫复合物可导致融合后第3天恢复CDK2活性,但未恢复CDK4活性,表明此时存在抑制蛋白与细胞周期蛋白/ CDK2复合物结合。汇合后第3天,p21(Waf1 / Cip1)与CDK2复合物的结合增加,这表明p21(Waf1 / Cip1)在CDK2失活中具有潜在作用。但是,从Caco-2蛋白提取物中p21(Waf1 / Cip1)的免疫耗竭表明,p21(Waf1 / Cip1)在汇合后第3天仅部分负责CDK2抑制。细胞周期蛋白E / CDK2复合物的减少似乎有助于汇合后第6天和第12天注意到CDK2失活。两者合计,我们的结果表明,多种机制有助于Caco-2细胞分化过程中CDK抑制。在Caco-2细胞分化之前,对CDK2和CDK4的抑制会导致G1阻滞和增殖抑制。

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