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首页> 外文期刊>Current cancer drug targets >Persistent P21Cip1 induction mediates G(1) cell cycle arrest by methylseleninic acid in DU145 prostate cancer cells.
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Persistent P21Cip1 induction mediates G(1) cell cycle arrest by methylseleninic acid in DU145 prostate cancer cells.

机译:持久性P21Cip1诱导介导DU145前列腺癌细胞中的甲基硒酸对G(1)细胞周期的阻滞。

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摘要

The induction of G(1) cell cycle arrest and apoptosis by second-generation selenium compounds (e.g., methylselenol precursors such as methylseleninic acid, MSeA) may contribute to their anti-cancer activities. We have documented previously induction of G(1) arrest and apoptosis by MSeA in association with upregulation of cyclin-dependent kinase inhibitor (CDKI) proteins P21Cip1 and/or P27Kip1 in DU145 prostate cancer cells. However, whether these CDKIs play a critical mediator role in G(1) arrest and apoptosis by MSeA has not been addressed. In the present work, we show exposure of p53-mutant DU145 cells to sub-apoptotic concentrations of MSeA induced p21cip1 mRNA (3 h) and protein (6 h) much faster than p27kip1 mRNA (12 h) and protein (12 h). Knocking down of P21 by siRNA completely abolished G(1) arrest induction by MSeA in DU145 cells, yet si-p27 RNA had no attenuation effect on the G(1) arrest. Depletion of P21Cip1 alone or both P21Cip1 and P27Kip1 increased MSeA-induced caspase-mediated apoptosis. Immunoprecipitation detected increased binding of P21Cip1 to CDK2 and CDK6 in MSeA-exposed DU145 cells. In DU145 xenografts from mice acutely treated with MSeA p.o., the induction of p21Cip1 was observed at 72 h of daily exposure. In p53-wild type LNCaP PCa cells and p53-null PC-3 PCa cells, MSeA modestly and transiently upregulated P21Cip1 protein level, subsiding to basal level by 24 h, without affecting P27Kip1 abundance in the same duration. Si-p21 RNA knockdown in these cells have only a partial effect to reverse G(1) arrest induction by MSeA. Together, our data support persistent, p53-independent, P21Cip1 induction as a critical mediator of MSeA-induced G(1) arrest in DU145 PCa cells, however, P21Cip1 induction and G(1) arrest were not necessary for, and may antagonize, caspase-mediated apoptosis.
机译:第二代硒化合物(例如,甲基硒醇前体如甲基硒酸,MSeA)诱导G(1)细胞周期停滞和凋亡,可能有助于其抗癌活性。我们已经记录了先前通过MSeA诱导的G(1)逮捕和凋亡与DU145前列腺癌细胞中细胞周期蛋白依赖性激酶抑制剂(CDKI)蛋白P21Cip1和/或P27Kip1的上调有关。但是,这些CDKIs是否在MSeA的G(1)逮捕和凋亡中起着关键的介体作用尚未得到解决。在目前的工作中,我们显示p53突变DU145细胞暴露于亚凋亡浓度的MSeA诱导的p21cip1 mRNA(3 h)和蛋白质(6 h)比p27kip1 mRNA(12 h)和蛋白质(12 h)快得多。 siRNA敲除P21完全废除了DU145细胞中MSeA对G(1)的阻滞诱导作用,但是si-p27 RNA对G(1)的阻滞作用没有减弱作用。单独消耗P21Cip1或同时消耗P21Cip1和P27Kip1均可增加MSeA诱导的caspase介导的细胞凋亡。免疫沉淀检测到在MSeA暴露的DU145细胞中P21Cip1与CDK2和CDK6的结合增加。在经MSeA p.o.急性处理的小鼠的DU145异种移植物中,在每天暴露72 h时观察到p21Cip1的诱导。在p53野生型LNCaP PCa细胞和p53无PC-3 PCa细胞中,MSeA适度和短暂上调P21Cip1蛋白水平,在24小时内降至基础水平,而在相同的时间内不影响P27Kip1的丰度。在这些细胞中的Si-p21 RNA敲低只有部分作用可以逆转MSeA对G(1)的阻滞诱导。总之,我们的数据支持持久性,独立于p53的P21Cip1诱导作为DU145 PCa细胞中MSeA诱导的G(1)阻滞的关键介质,但是,P21Cip1诱导和G(1)阻滞对于并不一定是必需的,半胱天冬酶介导的细胞凋亡。

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