Liu Jing, Yang Lin, Liu Xiaojun, Liu Lu, Liu Menghan, Feng Xuefeng, Luo Jianmin
Key Laboratory of Hematology, Second Hospital of Hebei Medical University, Shijiazhuang 050000, China.
Stem Cells Int. 2022 Sep 8;2022:9993393. doi: 10.1155/2022/9993393. eCollection 2022.
To investigate that HOTTIP suppressed PTEN gene expression and was involved in IM resistance in chronic myeloid leukemia through recruitment of EZH2 protein.
Seventy-one cases of bone marrow monocytes diagnosed with CML in the Second Hospital of Hebei Medical University from 2018 to 2021 were selected. These patients were diagnosed with CML by bone marrow morphology, immunology, molecular biology, and cytogenetics, of which 36 were sensitive to IM and 35 were resistant to IM. We selected K562 and IR-K562 cells preserved in the laboratory as our subjects to study the expression levels of HOTTIP in the bone marrow cells of IM CML-resistant patients and IM-resistant cells.
In this study, we found that HOTTIP was highly expressed in the bone marrow and cell lines of CML patients resistant to Imatinib mesylate (IM). In in vitro experiments, lentiviral knockdown of HOTTIP inhibited CML cell proliferation and promoted apoptosis, and knockdown of HOTTIP also increased sensitivity to IM. Mechanistically, highly expressed HOTTIP is involved in the biological process of IM resistance by recruiting Zeste homologous protein 2 enhancer (EZH2) to inhibit the expression of phosphatase and Tensin homologous protein (PTEN) genes.
We confirmed that HOTTIP and EZH2 are highly expressed in IM-resistant patients and IM-resistant CML cell lines. In CML cell lines, HOTTIP is involved in regulating the proliferation and apoptosis of CML cells and resistance to IM.
探讨热端非编码RNA(HOTTIP)通过募集EZH2蛋白抑制磷酸酶和张力蛋白同源物(PTEN)基因表达并参与慢性髓系白血病(CML)对伊马替尼(IM)耐药的机制。
选取2018年至2021年在河北医科大学第二医院确诊为CML的71例骨髓单核细胞患者。这些患者通过骨髓形态学、免疫学、分子生物学和细胞遗传学诊断为CML,其中36例对IM敏感,35例对IM耐药。我们选取实验室保存的K562和IR-K562细胞作为研究对象,检测IM耐药CML患者骨髓细胞及IM耐药细胞中HOTTIP的表达水平。
本研究发现,HOTTIP在对甲磺酸伊马替尼(IM)耐药的CML患者的骨髓和细胞系中高表达。体外实验中,慢病毒介导的HOTTIP敲低抑制了CML细胞增殖并促进凋亡,同时敲低HOTTIP还增加了细胞对IM的敏感性。机制上,高表达的HOTTIP通过募集zeste同源蛋白2增强子(EZH2)抑制PTEN基因表达,从而参与IM耐药的生物学过程。
我们证实HOTTIP和EZH2在IM耐药患者及IM耐药CML细胞系中高表达。在CML细胞系中,HOTTIP参与调节CML细胞的增殖、凋亡及对IM的耐药性。