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首页> 外文期刊>Cell death & disease. >PIAS1-modulated Smad2/4 complex activation is involved in zinc-induced cancer cell apoptosis
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PIAS1-modulated Smad2/4 complex activation is involved in zinc-induced cancer cell apoptosis

机译:PIAS1调节的Smad2 / 4复合物激活参与锌诱导的癌细胞凋亡

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摘要

Prostate cancer is one of the most frequently diagnosed cancers among men. Dietary intake of nutrients is considered crucial for preventing the initiation of events leading to the development of carcinoma. Many dietary compounds have been considered to contribute to cancer prevention including zinc, which has a pivotal role in modulating apoptosis. However, the mechanism for zinc-mediated prostate cancer chemoprevention remains enigmatic. In this study, we investigated the therapeutic effect of zinc in prostate cancer chemoprevention for the first time. Exposure to zinc induced apoptosis and resulted in transactivation of p21 WAF1/Cip1 in a Smad-dependent and p53-independent manner in prostate cancer cells. Smad2 and PIAS1 proteins were significantly upregulated resulting in dramatically increased interactions between Smad2/4 and PIAS1 in the presence of zinc in LNCaP cells. Furthermore, it was found that the zinc-induced Smad4/2/PIAS1 transcriptional complex is responsible for Smad4 binding to SBE1 and SBE3 regions within the p21 WAF1/Cip1 promoter. Exogenous expression of Smad2/4 and PIAS1 promotes zinc-induced apoptosis concomitant with Smad4 nuclear translocation, whereas endogenous Smad2/4 silencing inhibited zinc-induced apoptosis accompanying apparent p21 WAF1/Cip1 reduction. Moreover, the knockdown of PIAS1 expression attenuated the zinc-induced recruitment of Smad4 on the p21 WAF1/Cip1 promoter. The colony formation experiments demonstrate that PIAS1 and Smad2/4 silencing could attenuate zinc apoptotic effects, with a proliferation of promoting effects. We further demonstrate the correlation of apoptotic sensitivity to zinc and Smad4 and PIAS1 in multiple cancer cell lines, demonstrating that the important roles of PIAS1, Smad2, and Smad4 in zinc-induced cell death and p21 WAF1/Cip1 transactivation were common biological events in different cancer cell lines. Our results suggest a new avenue for regulation of zinc-induced apoptosis, and provide a model that demonstrates zinc endorses the Smad2/4/PIAS1 complex to activate the p21 WAF1/Cip1 gene that mediates apoptosis.
机译:前列腺癌是男性中最常被诊断出的癌症之一。饮食中摄取营养素被认为对于防止引发癌症发展的事件至关重要。许多饮食化合物被认为有助于癌症的预防,包括锌,锌在调节细胞凋亡中具有关键作用。但是,锌介导的前列腺癌化学预防的机制仍然是个谜。在这项研究中,我们首次研究了锌在前列腺癌化学预防中的治疗作用。锌暴露诱导前列腺癌细胞凋亡,并导致p21 WAF1 / Cip1 以Smad依赖性和p53依赖性方式反式激活。在LNCaP细胞中存在锌时,Smad2和PIAS1蛋白显着上调,导致Smad2 / 4与PIAS1之间的相互作用急剧增加。此外,发现锌诱导的Smad4 / 2 / PIAS1转录复合体负责Smad4与p21 WAF1 / Cip1 启动子内的SBE1和SBE3区的结合。 Smad2 / 4和PIAS1的外源表达促进锌诱导的细胞凋亡,并伴随Smad4核易位,而内源性Smad2 / 4沉默抑制锌诱导的细胞凋亡,伴随p21 WAF1 / Cip1 的明显降低。此外,PIAS1表达的敲低减弱了锌诱导的p21 WAF1 / Cip1 启动子上Smad4的募集。菌落形成实验表明,PIAS1和Smad2 / 4沉默可以减弱锌的凋亡作用,并具有促进作用的扩散。我们进一步证明了多种癌细胞系对锌和Smad4和PIAS1的凋亡敏感性之间的相关性,表明PIAS1,Smad2和Smad4在锌诱导的细胞死亡和p21 WAF1 / Cip1 中的重要作用反式激活是不同癌细胞系中常见的生物学事件。我们的结果为调节锌诱导的细胞凋亡提供了一条新途径,并提供了一个模型,证明锌支持Smad2 / 4 / PIAS1复合物激活激活介导细胞凋亡的p21 WAF1 / Cip1 基因。

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