Department of Dermatology, Institut Hospital del Mar d'Investigacions Mèdiques (IMIM), Universitat Autònoma Barcelona, Carrer del Dr. Aiguader, 88, 08003 Barcelona, Spain.
Cancer Research Program Hospital del Mar Medical Research Institute (IMIM), 08003 Barcelona, Spain.
Cells. 2020 Dec 15;9(12):2692. doi: 10.3390/cells9122692.
Increasing evidence supports a potential role for STAT3 as a tumor driver in cutaneous T-cell lymphomas (CTCL). The mechanisms leading to STAT3 activation are not fully understood; however, we recently found that miR-124, a known STAT3 regulator, is robustly silenced in MF tumor-stage and CTCL cells.
We studied here whether deregulation of miR-124 contributes to STAT3 pathway activation in CTCL.
We measured the effect of ectopic mir-124 expression in active phosphorylated STAT3 (p-STAT3) levels and evaluated the transcriptional impact of miR-124-dependent STAT3 pathway regulation by expression microarray analysis.
We found that ectopic expression of miR-124 results in massive downregulation of activated STAT3 in different CTCL lines, which resulted in a significant alteration of genetic signatures related with gene transcription and proliferation such as MYC and E2F.
Our study highlights the importance of the miR-124/STAT3 axis in CTCL and demonstrates that the STAT3 pathway is regulated through epigenetic mechanisms in these cells. Since deregulated STAT3 signaling has a major impact on CTCL initiation and progression, a better understanding of the molecular basis of the miR-124/STAT3 axis may provide useful information for future personalized therapies.
越来越多的证据支持 STAT3 作为皮肤 T 细胞淋巴瘤 (CTCL) 的肿瘤驱动因子的潜在作用。导致 STAT3 激活的机制尚未完全阐明;然而,我们最近发现,miR-124,一种已知的 STAT3 调节剂,在 MF 肿瘤期和 CTCL 细胞中被强烈沉默。
我们在此研究了 miR-124 的失调是否导致 CTCL 中 STAT3 途径的激活。
我们测量了外源性 mir-124 表达对磷酸化 STAT3(p-STAT3)水平的影响,并通过表达微阵列分析评估了 miR-124 依赖性 STAT3 途径调节的转录影响。
我们发现,外源性表达 miR-124 导致不同 CTCL 系中激活的 STAT3 大量下调,导致与基因转录和增殖相关的基因特征发生显著改变,如 MYC 和 E2F。
我们的研究强调了 miR-124/STAT3 轴在 CTCL 中的重要性,并表明这些细胞中的 STAT3 途径受表观遗传机制调控。由于失调的 STAT3 信号对 CTCL 的起始和进展有重大影响,因此更好地了解 miR-124/STAT3 轴的分子基础可能为未来的个性化治疗提供有用信息。