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研究靶向信号转导与转录激活因子3(STAT3)通过调节慢性粒细胞白血病细胞能量代谢来克服耐药性的潜在治疗作用。

Investigating the potential therapeutic role of targeting STAT3 for overcoming drug resistance by regulating energy metabolism in chronic myeloid leukemia cells.

作者信息

Tezcanli Kaymaz Burcin, Selvi Gunel Nur, Sogutlu Fatma, Ozates Ay Neslihan Pinar, Baran Yusuf, Gunduz Cumhur, Biray Avci Cigir

机构信息

Department of Medical Biology, Ege University Medicine Faculty, 35100, Izmir, Turkey.

Department of Molecular Biology and Genetics, Faculty of Science, Izmir Institute of Technology, 35433, Izmir, Turkey.

出版信息

Iran J Basic Med Sci. 2022 Jul;25(7):904-912. doi: 10.22038/IJBMS.2022.64138.14121.

Abstract

OBJECTIVES

STATs are one of the initial targets of emerging anti-cancer agents due to their regulatory roles in survival, apoptosis, drug response, and cellular metabolism in CML. Aberrant STAT3 activity promotes malignancy, and acts as a metabolic switcher in cancer cell metabolism, contributing to resistance to TKI nilotinib. To investigate the possible therapeutic effects of targeting STAT3 to overcome nilotinib resistance by evaluating various cellular responses in both sensitive and nilotinib resistant CML cells and to test the hypothesis that energy metabolism modulation could be a mechanism for re-sensitization to nilotinib in resistant cells.

MATERIALS AND METHODS

By using RNAi-mediated STAT3 gene silencing, cell viability and proliferation assays, apoptotic analysis, expressional regulations of STAT mRNA transcripts, STAT3 total, pTyr705, pSer727 protein expression levels, and metabolic activity as energy metabolism was determined in CML model K562 cells,

RESULTS

Targeting STAT3 sensitized both parental and especially nilotinib resistant cells by decreasing leukemic cell survival; inducing leukemic cell apoptosis, and decreasing STAT3 mRNA and protein expression levels. Besides, cell energy phenotype was modulated by switching energy metabolism from aerobic glycolysis to mitochondrial respiration in resistant cells. RNAi-mediated STAT3 silencing accelerated the sensitization of leukemia cells to nilotinib treatment, and STAT3-dependent energy metabolism regulation could be another underlying mechanism for regaining nilotinib response.

CONCLUSION

Targeting STAT3 is an efficient strategy for improving the development of novel CML therapeutics for regaining nilotinib response, and re-sensitization of resistant cells could be mediated by induced apoptosis and regulation in energy metabolism.

摘要

目的

信号转导和转录激活因子(STATs)是新型抗癌药物的初始靶点之一,因为它们在慢性粒细胞白血病(CML)的存活、凋亡、药物反应和细胞代谢中发挥调节作用。异常的STAT3活性促进恶性肿瘤的发生,并在癌细胞代谢中充当代谢转换因子,导致对尼洛替尼产生耐药性。通过评估敏感和耐尼洛替尼的CML细胞中的各种细胞反应,研究靶向STAT3以克服尼洛替尼耐药性的可能治疗效果,并检验能量代谢调节可能是耐药细胞对尼洛替尼重新敏感的机制这一假设。

材料和方法

通过RNA干扰介导的STAT3基因沉默、细胞活力和增殖测定、凋亡分析、STAT mRNA转录本的表达调控、STAT3总量、pTyr705、pSer727蛋白表达水平以及代谢活性(因为能量代谢在CML模型K562细胞中得以确定)。

结果

靶向STAT3通过降低白血病细胞存活率使亲代细胞尤其是耐尼洛替尼细胞敏感化;诱导白血病细胞凋亡,并降低STAT3 mRNA和蛋白表达水平。此外,通过将耐药细胞的能量代谢从有氧糖酵解转换为线粒体呼吸来调节细胞能量表型。RNA干扰介导的STAT3沉默加速了白血病细胞对尼洛替尼治疗的敏感性,并且STAT3依赖性能量代谢调节可能是恢复对尼洛替尼反应的另一个潜在机制。

结论

靶向STAT3是改善新型CML治疗药物开发以恢复对尼洛替尼反应的有效策略,耐药细胞的重新敏感化可能由诱导凋亡和能量代谢调节介导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/172c/9392574/98bf9ea5d72c/IJBMS-25-904-g001.jpg

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