Institute of Hematology, Changhai Hospital, Naval Medical University, Shanghai, China.
Mol Carcinog. 2019 May;58(5):808-819. doi: 10.1002/mc.22973. Epub 2019 Jan 28.
Microsomal epoxide hyrolase 1 (EPHX1) is a critical biotransformation enzyme and participants in both the detoxification and activation of potentially genotoxic epoxides. In this study, we firstly aimed to investigate the role of EPHX1 in the chemoresistance of acute myeloid leukemic cells to aclarubicin (ACM) and mitoxantrone (MIT). EPHX1 mRNA expression and prognosis were measured in acute myeloid leukemia (AML) patients, and the function of EPHX1 in leukemic cell viability and apoptosis induced by ACM and MIT was also measured. Our results found that EPHX1 expression is obviously associated with recurrence rate, overall survival and time of obtaining first complete remission in AML patients. EPHX1 silencing promoted ACM and MIT induced decrease in cell viability and cell apoptosis of HL-60, K562, and THP-1 that was inhibited by EPHX1 overexpression. EPHX1 reduced the susceptibility of leukemic cells to ACM and MIT by regulating drug-metabolizing enzymes (CYP1A1, GSTM1, and GSTT1) and apoptotic signaling (Bax, Bcl-2, Caspase-3, Caspase-9, and PARP1). Moreover, Nrf2 overexpression significantly increased EPHX1 expression and leukemic cell viability and decreased leukemic cell apoptosis. Taken together, we summarized the recent findings about the chemoresistance-promoting role of EPHX1, and the potential of targeting EPHX1 was proposed to counteract drug resistance in leukemia treatment.
微粒体环氧化物水解酶 1(EPHX1)是一种关键的生物转化酶,参与潜在遗传毒性环氧化物的解毒和激活。在这项研究中,我们首先旨在研究 EPHX1 在急性髓系白血病细胞对阿克拉霉素(ACM)和米托蒽醌(MIT)的化学耐药性中的作用。测量了急性髓系白血病(AML)患者的 EPHX1 mRNA 表达和预后,并测量了 EPHX1 在 ACM 和 MIT 诱导的白血病细胞活力和细胞凋亡中的作用。我们的结果发现,EPHX1 表达与 AML 患者的复发率、总生存率和首次完全缓解时间明显相关。EPHX1 沉默促进了 ACM 和 MIT 诱导的 HL-60、K562 和 THP-1 细胞活力下降和细胞凋亡,而 EPHX1 过表达则抑制了细胞凋亡。EPHX1 通过调节药物代谢酶(CYP1A1、GSTM1 和 GSTT1)和凋亡信号(Bax、Bcl-2、Caspase-3、Caspase-9 和 PARP1)降低了白血病细胞对 ACM 和 MIT 的敏感性。此外,Nrf2 过表达显著增加了 EPHX1 表达和白血病细胞活力,降低了白血病细胞凋亡。总之,我们总结了最近关于 EPHX1 促进化学耐药性的发现,并提出了靶向 EPHX1 的潜在可能性,以对抗白血病治疗中的耐药性。