National Centre for Cell Science, Pune University, Pune, Maharastra, India.
PLoS One. 2007 Aug 1;2(7):e660. doi: 10.1371/journal.pone.0000660.
Tumor suppressor SMAR1 interacts and stabilizes p53 through phosphorylation at its serine-15 residue. We show that SMAR1 transcription is regulated by p53 through its response element present in the SMAR1 promoter. Upon Doxorubicin induced DNA damage, acetylated p53 is recruited on SMAR1 promoter that allows activation of its transcription. Once SMAR1 is induced, cell cycle arrest is observed that is correlated to increased phospho-ser-15-p53 and decreased p53 acetylation. Further we demonstrate that SMAR1 expression is drastically reduced during advancement of human breast cancer. This was correlated with defective p53 expression in breast cancer where acetylated p53 is sequestered into the heterochromatin region and become inaccessible to activate SMAR1 promoter. In a recent report we have shown that SMAR1 represses Cyclin D1 transcription through recruitment of HDAC1 dependent repressor complex at the MAR site of Cyclin D1 promoter. Here we show that downmodulation of SMAR1 in high grade breast carcinoma is correlated with upregulated Cyclin D1 expression. We also established that SMAR1 inhibits tumor cell migration and metastases through inhibition of TGFbeta signaling and its downstream target genes including cutl1 and various focal adhesion molecules. Thus, we report that SMAR1 plays a central role in coordinating p53 and TGFbeta pathways in human breast cancer.
肿瘤抑制因子 SMAR1 通过其丝氨酸-15 残基的磷酸化与 p53 相互作用并稳定 p53。我们表明,SMAR1 转录受 p53 通过其在 SMAR1 启动子中存在的反应元件调节。在阿霉素诱导的 DNA 损伤后,乙酰化的 p53 被募集到 SMAR1 启动子上,从而允许其转录激活。一旦 SMAR1 被诱导,就会观察到细胞周期停滞,这与磷酸化丝氨酸-15-p53 的增加和 p53 乙酰化的减少相关。此外,我们证明 SMAR1 在人乳腺癌的进展过程中表达急剧降低。这与乳腺癌中 p53 表达缺陷相关,其中乙酰化的 p53 被隔离到异染色质区域,无法激活 SMAR1 启动子。在最近的一份报告中,我们已经表明,SMAR1 通过募集 HDAC1 依赖性抑制复合物到 Cyclin D1 启动子的 MAR 位点来抑制 Cyclin D1 的转录。在这里,我们表明,高级别乳腺癌中 SMAR1 的下调与 Cyclin D1 表达的上调相关。我们还确定,SMAR1 通过抑制 TGFβ信号及其下游靶基因,包括 cutl1 和各种粘着斑分子,抑制肿瘤细胞迁移和转移。因此,我们报告 SMAR1 在协调人乳腺癌中的 p53 和 TGFβ 途径中发挥核心作用。