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Multifaceted Regulation of Cell Cycle Progression by Estrogen: Regulation of Cdk Inhibitors and Cdc25A Independent of Cyclin D1-Cdk4 Function

机译:雌激素对细胞周期进程的多方面调节:Cdk抑制剂和Cdc25A的调节与细胞周期蛋白D1-Cdk4功能无关

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摘要

Estrogens induce proliferation of estrogen receptor (ER)-positive MCF-7 breast cancer cells by stimulating G1/S transition associated with increased cyclin D1 expression, activation of cyclin-dependent kinases (Cdks), and phosphorylation of the retinoblastoma protein (pRb). We have utilized blockade of cyclin D1-Cdk4 complex formation through adenovirus-mediated expression of p16INK4a to demonstrate that estrogen regulates Cdk inhibitor expression and expression of the Cdk-activating phosphatase Cdc25A independent of cyclin D1-Cdk4 function and cell cycle progression. Expression of p16INK4a inhibited G1/S transition induced in MCF-7 cells by 17-β-estradiol (E2) with associated inhibition of both Cdk4- and Cdk2-associated kinase activities. Inhibition of Cdk2 activity was associated with delayed removal of Cdk-inhibitory activity in early G1 and decreased cyclin A expression. Cdk-inhibitory activity and expression of both p21Cip1 and p27Kip1 was decreased, however, in both control and p16INK4a-expressing cells 20 h after estrogen treatment. Expression of Cdc25A mRNA and protein was induced by E2 in control and p16INK4a-expressing MCF-7 cells; however, functional activity of Cdc25A was inhibited in cells expressing p16INK4a. Inhibition of Cdc25A activity in p16INK4a-expressing cells was associated with depressed Cdk2 activity and was reversed in vivo and in vitro by active Cdk2. Transfection of MCF-7 cells with a dominant-negative Cdk2 construct inhibited the E2-dependent activation of ectopic Cdc25A. Supporting a role for Cdc25A in estrogen action, antisense CDC25A oligonucleotides inhibited estrogen-induced Cdk2 activation and DNA synthesis. In addition, inactive cyclin E-Cdk2 complexes from p16INK4a-expressing, estrogen-treated cells were activated in vitro by treatment with recombinant Cdc25A and in vivo in cells overexpressing Cdc25A. The results demonstrate that functional association of cyclin D1-Cdk4 complexes is required for Cdk2 activation in MCF-7 cells and that Cdk2 activity is, in turn, required for the in vivo activation of Cdc25A. These studies establish Cdc25A as a growth-promoting target of estrogen action and further indicate that estrogens independently regulate multiple components of the cell cycle machinery, including expression of p21Cip1 and p27Kip1.
机译:雌激素通过刺激与细胞周期蛋白D1表达增加,细胞周期蛋白依赖性激酶(Cdks)激活和视网膜母细胞瘤蛋白(pRb)磷酸化相关的G1 / S转变,诱导雌激素受体(ER)阳性MCF-7乳腺癌细胞增殖。我们已经利用通过腺病毒介导的p16INK4a表达来阻断细胞周期蛋白D1-Cdk4复合物的形成,以证明雌激素调节Cdk抑制剂的表达以及Cdk激活磷酸酶Cdc25A的表达,而与细胞周期蛋白D1-Cdk4的功能和细胞周期进程无关。 p16INK4a的表达抑制了17-β-雌二醇(E2)在MCF-7细胞中诱导的G1 / S转变,同时抑制了与Cdk4和Cdk2相关的激酶活性。 Cdk2活性的抑制与早期G1中Cdk抑制活性的延迟清除和细胞周期蛋白A表达降低有关。然而,在雌激素处理后20小时,在对照细胞和表达p16INK4a的细胞中,Cdk抑制活性和p21Cip1和p27Kip1的表达均降低。 E2诱导对照和表达p16INK4a的MCF-7细胞中Cdc25A mRNA和蛋白的表达。但是,在表达p16INK4a的细胞中Cdc25A的功能活性受到抑制。在表达p16INK4a的细胞中抑制Cdc25A活性与抑制Cdk2活性有关,并且在体内和体外被活性Cdk2逆转。用显性阴性Cdk2构建体转染MCF-7细胞可抑制异位Cdc25A的E2依赖性活化。支持Cdc25A在雌激素作用中的作用,反义CDC25A寡核苷酸抑制了雌激素诱导的Cdk2活化和DNA合成。此外,表达p16INK4a,经雌激素处理的细胞的失活的细胞周期蛋白E-Cdk2复合物在体外通过重组Cdc25A处理而被激活,并在体内过表达Cdc25A的细胞中被激活。结果表明,在MCF-7细胞中激活Cdk2需要细胞周期蛋白D1-Cdk4复合物的功能缔合,而在体内激活Cdc25A则需要Cdk2活性。这些研究将Cdc25A确立为雌激素作用的生长促进靶标,并进一步表明雌激素独立调节细胞周期机制的多个组成部分,包括p21Cip1和p27Kip1的表达。

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