STAT3/蜗牛信号传导与乳腺癌细胞缺氧耐受的进展

IF 2.2 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Olga E. Andreeva, Danila V. Sorokin, Alexander M. Scherbakov, Svetlana V. Vinokurova, Pavel B. Kopnin, Nadezhda V. Elkina, Maria D. Fedorova, Alexey N. Katargin, Danila S. Elkin, Mikhail A. Krasil’nikov
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引用次数: 0

摘要

恶性肿瘤的特征之一是它们在缺氧条件下维持生长的能力,这种缺氧条件是由肿瘤组织缺氧引起的。长时间的缺氧与肿瘤细胞逐渐适应低氧水平有关,导致生存率提高,转移潜力增加,并对抗癌治疗产生耐药性。本研究的目的是探讨乳腺癌细胞适应长期缺氧和维持耐缺氧表型的机制。通过低氧条件下(1% O2)的长期培养,我们建立了luminal (MCF-7)和三阴性(MDA-MB-231)乳腺癌细胞的低氧适应亚群,其特点是在低氧环境中稳定生长。低氧耐受性的获得伴随着hif -1α-依赖性转录因子STAT3的激活和STAT3关键下游效应因子Snail的持续过表达。耐缺氧表型的维持和稳定是由miR-181a-2介导的,miR-181a-2靶向耐氧细胞中的STAT3/Snail信号轴。DNA甲基化状态分析显示,缺氧适应细胞中DNA甲基转移酶(dnmt)的表达或活性没有显著变化。然而,使用地西他滨对DNMT进行药理学抑制,以及DNMT敲低,增加了细胞对缺氧的敏感性,并部分逆转了耐缺氧表型,这伴随着促凋亡p53信号的激活。总之,我们的研究结果表明,乳腺癌细胞的获得性缺氧耐受性至少部分是由miR-181a-2/STAT3/Snail信号通路的激活介导的。此外,使用去甲基化药物可能是一种很有前途的治疗方法,可以靶向耐缺氧的癌细胞群。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
STAT3/Snail Signaling and Progression of Hypoxia Tolerance in Breast Cancer Cells

One of the hallmarks of malignant neoplasms is their ability to sustain growth under hypoxic conditions resulting from insufficient oxygenation of tumor tissues. Prolonged hypoxia is associated with the gradual adaptation of tumor cells to low oxygen levels, leading to the enhanced survival, increased metastatic potential, and development of resistance to anticancer therapies. The aim of this study was to investigate the mechanisms underlying adaptation of breast cancer cell to prolonged hypoxia and maintenance of the hypoxia-tolerant phenotype. Using long-term culturing under low oxygen conditions (1% O2), we established hypoxia-adapted sublines of luminal (MCF-7) and triple-negative (MDA-MB-231) breast cancer cells, characterized by a stable growth in a hypoxic environment. The acquisition of hypoxia tolerance was accompanied by the activation of the HIF-1α-dependent transcription factor STAT3 and persistent overexpression of Snail, a key downstream effector of STAT3. The maintenance and stabilization of hypoxia-tolerant phenotype are mediated by miR-181a-2, which targets the STAT3/Snail signaling axis in the resistant cells. Analysis of DNA methylation status revealed no significant changes in the expression or activity of DNA methyltransferases (DNMTs) in the hypoxia-adapted cells. However, pharmacological inhibition of DNMTs using decitabine, as well as DNMT knockdown, increased cell sensitivity to hypoxia and partially reversed the hypoxia-resistant phenotype, which was accompanied by the activation of pro-apoptotic p53 signaling. In conclusion, our findings suggest that the acquired hypoxia tolerance in breast cancer cells is mediated, at least in part, by the activation of the miR-181a-2/STAT3/Snail signaling pathway. Furthermore, the use of demethylating agents may represent a promising therapeutic approach to targeting hypoxia-tolerant cancer cell populations.

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来源期刊
Biochemistry (Moscow)
Biochemistry (Moscow) 生物-生化与分子生物学
CiteScore
4.70
自引率
3.60%
发文量
139
审稿时长
2 months
期刊介绍: Biochemistry (Moscow) is the journal that includes research papers in all fields of biochemistry as well as biochemical aspects of molecular biology, bioorganic chemistry, microbiology, immunology, physiology, and biomedical sciences. Coverage also extends to new experimental methods in biochemistry, theoretical contributions of biochemical importance, reviews of contemporary biochemical topics, and mini-reviews (News in Biochemistry).
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