首页> 美国卫生研究院文献>Scientific Reports >Benzyl Isothiocyanate potentiates p53 signaling and antitumor effects against breast cancer through activation of p53-LKB1 and p73-LKB1 axes
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Benzyl Isothiocyanate potentiates p53 signaling and antitumor effects against breast cancer through activation of p53-LKB1 and p73-LKB1 axes

机译:异硫氰酸苄酯通过激活p53-LKB1和p73-LKB1轴增强p53信号转导和对乳腺癌的抗肿瘤作用

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摘要

Functional reactivation of p53 pathway, although arduous, can potentially provide a broad-based strategy for cancer therapy owing to frequent p53 inactivation in human cancer. Using a phosphoprotein-screening array, we found that Benzyl Isothiocynate, (BITC) increases p53 phosphorylation in breast cancer cells and reveal an important role of ERK and PRAS40/MDM2 in BITC-mediated p53 activation. We show that BITC rescues and activates p53-signaling network and inhibits growth of p53-mutant cells. Mechanistically, BITC induces p73 expression in p53-mutant cells, disrupts the interaction of p73 and mutant-p53, thereby releasing p73 from sequestration and allowing it to be transcriptionally active. Furthermore, BITC-induced p53 and p73 axes converge on tumor-suppressor LKB1 which is transcriptionally upregulated by p53 and p73 in p53-wild-type and p53-mutant cells respectively; and in a feed-forward mechanism, LKB1 tethers with p53 and p73 to get recruited to p53-responsive promoters. Analyses of BITC-treated xenografts using LKB1-null cells corroborate in vitro mechanistic findings and establish LKB1 as the key node whereby BITC potentiates as well as rescues p53-pathway in p53-wild-type as well as p53-mutant cells. These data provide first in vitro and in vivo evidence of the integral role of previously unrecognized crosstalk between BITC, p53/LKB1 and p73/LKB1 axes in breast tumor growth-inhibition.
机译:由于人类癌症中频繁的p53失活,p53途径的功能性激活虽然艰巨,但仍可能为癌症治疗提供广泛的策略。使用磷蛋白筛选阵列,我们发现异硫氰酸苄酯(BITC)增加了乳腺癌细胞中的p53磷酸化,并揭示了ERK和PRAS40 / MDM2在BITC介导的p53激活中的重要作用。我们表明,BITC救援并激活p53信号网络并抑制p53突变细胞的生长。从机理上讲,BITC诱导p53突变细胞中p73表达,破坏p73和突变体p53的相互作用,从而从螯合中释放出p73,使其具有转录活性。此外,BITC诱导的p53和p73轴会聚在抑癌基因LKB1上,后者在p53野生型和p53突变细胞中分别被p53和p73上调。在前馈机制中,LKB1与p53和p73的系链被募集到p53反应性启动子。使用LKB1空细胞对BITC处理的异种移植物的分析证实了体外机制的发现,并确定LKB1是BITC增强以及挽救p53野生型以及p53突变细胞中p53途径的关键节点。这些数据提供了BITC,p53 / LKB1和p73 / LKB1轴之间先前无法识别的串扰在乳腺肿瘤生长抑制中的整体作用的首次体外和体内证据。

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