Butyrate increases methylglyoxal production through regulation of the JAK2/Stat3/Nrf2/Glo1 pathway in castration‑resistant prostate cancer cells.

IF 3.8 3区 医学 Q2 ONCOLOGY Oncology reports Pub Date : 2024-04-05 DOI:10.3892/or.2024.8730
Yi-Jan Hsia, Zhang-Min Lin, Taolan Zhang, Tz-Chong Chou
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Abstract

Cancer cells are characterized by increased glycolysis, known as the Warburg effect, which leads to increased production of cytotoxic methylglyoxal (MGO) and apoptotic cell death. Cancer cells often activate the protective nuclear factor erythroid 2‑related factor2 (Nrf2)/glyoxalase1 (Glo1) system to detoxify MGO. The effects of sodium butyrate (NaB), a product of gut microbiota, on Nrf2/Glos/MGO pathway and the underlying mechanisms in prostate cancer (PCa) cells were investigated in the present study. Treatment with NaB induced the cell death and reduced the proliferation of PCa cells (DU145 and LNCap). Moreover, the protein kinase RNA-like endoplasmic reticulum kinase/Nrf2/Glo1 pathway was greatly inhibited by NaB, thereby accumulating MGO-derived adduct hydroimidazolone (MG-H1). In response to a high amount of MGO, the expression of Nrf2 and Glo1 was attenuated, coinciding with an increased cellular death. NaB also markedly inhibited the Janus kinase 2 (JAK2)/Signal transducer and activator of transcription 3 (Stat3) pathway. Conversely, co‑treatment with Colivelin, a Stat3 activator, significantly reversed the effects of NaB on Glo1 expression, MG-H1 production, and the cell migration and viability. As expected, overexpression of Stat3 or Glo1 reduced NaB‑induced cell death. The activation of calcium/calmodulin dependent protein kinase II gamma and reactive oxygen species production also contributed to the anticancer effect of NaB. The present study, for the first time, demonstrated that NaB greatly increases MGO production through suppression of the JAK2/Stat3/Nrf2/Glo1 pathway in DU145 cells, a cell line mimicking castration‑resistant PCa (CRPC), suggesting that NaB may be a potential agent for PCa therapy.
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丁酸盐通过调节耐阉割前列腺癌细胞中的JAK2/Stat3/Nrf2/Glo1途径增加甲基乙二酸的产生。
癌细胞的特点是糖酵解增加,即所谓的沃伯格效应,这会导致细胞毒性甲基乙二醛(MGO)的产生和细胞凋亡增加。癌细胞通常会激活保护性核因子红细胞2相关因子2(Nrf2)/乙二醛酶1(Glo1)系统来解毒MGO。本研究探讨了肠道微生物群产物丁酸钠(NaB)对前列腺癌(PCa)细胞中Nrf2/Glos/MGO通路的影响及其内在机制。用 NaB 处理可诱导 PCa 细胞(DU145 和 LNCap)死亡并减少其增殖。此外,NaB还极大地抑制了蛋白激酶RNA样内质网激酶/Nrf2/Glo1通路,从而积累了MGO衍生的加合物氢咪唑酮(MG-H1)。在大量 MGO 的作用下,Nrf2 和 Glo1 的表达减弱,同时细胞死亡增加。NaB 还明显抑制了 Janus 激酶 2(JAK2)/信号转导和转录激活因子 3(Stat3)通路。相反,与 Stat3 激活剂 Colivelin 联合处理可显著逆转 NaB 对 Glo1 表达、MG-H1 生成以及细胞迁移和活力的影响。正如预期的那样,Stat3 或 Glo1 的过表达可减少 NaB 诱导的细胞死亡。钙/钙调蛋白依赖性蛋白激酶Ⅱγ的活化和活性氧的产生也有助于NaB的抗癌作用。本研究首次证明,NaB 通过抑制 JAK2/Stat3/Nrf2/Glo1 通路大大增加了 DU145 细胞(一种模拟阉割耐药 PCa(CRPC)的细胞系)中 MGO 的产生,这表明 NaB 可能是一种治疗 PCa 的潜在药物。
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来源期刊
Oncology reports
Oncology reports 医学-肿瘤学
CiteScore
8.50
自引率
2.40%
发文量
187
审稿时长
3 months
期刊介绍: Oncology Reports is a monthly, peer-reviewed journal devoted to the publication of high quality original studies and reviews concerning a broad and comprehensive view of fundamental and applied research in oncology, focusing on carcinogenesis, metastasis and epidemiology.
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