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首页> 外文期刊>Cancers >Deciphering the Molecular Basis of Melatonin Protective Effects on Breast Cells Treated with Doxorubicin: TWIST1 a Transcription Factor Involved in EMT and Metastasis, a Novel Target of Melatonin
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Deciphering the Molecular Basis of Melatonin Protective Effects on Breast Cells Treated with Doxorubicin: TWIST1 a Transcription Factor Involved in EMT and Metastasis, a Novel Target of Melatonin

机译:解入褪黑激素保护作用对用多柔比星处理的乳腺细胞的分子基础:Twist1在EMT和转移中涉及的转录因子,褪黑素的新靶标

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Melatonin mitigates cancer initiation, progression and metastasis through inhibition of both the synthesis of estrogens and the transcriptional activity of the estradiol-ER (Estrogen receptor) complex in the estrogen-dependent breast cancer cell line MCF-7. Moreover, melatonin improves the sensitivity of MCF-7 to chemotherapeutic agents and protects against their side effects. It has been described that melatonin potentiates the anti-proliferative effects of doxorubicin; however, the molecular changes involving gene expression and the activation/inhibition of intracellular signaling pathways remain largely unknown. Here we found that melatonin enhanced the anti-proliferative effect of doxorubicin in MCF-7 but not in MDA-MB-231 cells. Strikingly, doxorubicin treatment induced cell migration and invasion, and melatonin effectively counteracted these effects in MCF-7 but not in estrogen-independent MDA-MB-231 cells. Importantly, we describe for the first time the ability of melatonin to downregulate TWIST1 (Twist-related protein 1) in estrogen-dependent but not in estrogen-independent breast cancer cells. Combined with doxorubicin, melatonin inhibited the activation of p70S6K and modulated the expression of breast cancer, angiogenesis and clock genes. Moreover, melatonin regulates the levels of TWIST1-related microRNAs, such as miR-10a, miR-10b and miR-34a. Since TWIST1 plays a pivotal role in the epithelial to mesenchymal transition, acquisition of metastatic phenotype and angiogenesis, our results suggest that inhibition of TWIST1 by melatonin might be a crucial mechanism of overcoming resistance and improving the oncostatic potential of doxorubicin in estrogen-dependent breast cancer cells.
机译:褪黑素通过抑制雌激素的合成和雌二醇-ER(雌激素受体)复合物中的雌激素依赖性乳腺癌细胞系MCF-7中的雌激素-ER(雌激素受体)复合物的转录活性来减轻癌症起始,进展和转移。此外,褪黑激素改善了MCF-7对化学治疗剂的敏感性,并防止其副作用。已经描述了褪黑素增强了多柔比星的抗增殖作用;然而,涉及基因表达和对细胞内信号传导途径的激活/抑制的分子变化仍然很大程度上是未知的。在这里,我们发现褪黑素增强了在MCF-7中的多柔比星的抗增殖作用,但不增强了MCF-7中的抗增殖作用,但不含MDA-MB-231细胞。引人注目的,多柔比星治疗诱导细胞迁移和侵袭,褪黑激素有效地抵消了MCF-7中的这些作用,但不含雌激素无关的MDA-MB-231细胞。重要的是,我们首次描述了褪黑素在雌激素依赖性但不含雌激素乳腺癌细胞中的褪黑素(扭曲相关蛋白1)的能力。结合多柔比星,褪黑激素抑制P70S6K的激活并调节乳腺癌,血管生成和时钟基因的表达。此外,褪黑激素调节Twist1相关微大罗氏的水平,例如miR-10a,miR-10b和miR-34a。由于Twist1在上皮中发挥枢轴作用,因此在结性过渡中起作用,获取转移性表型和血管生成,因此我们的结果表明,褪黑素的扭曲1的抑制可能是克服抗性和改善雌激素依赖性乳腺癌的骨髓蛋白的关键机制细胞。

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