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首页> 外文期刊>The Journal of biological chemistry >Anthracycline Inhibits Recruitment of Hypoxia-inducible Transcription Factors and Suppresses Tumor Cell Migration and Cardiac Angiogenic Response in the Host
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Anthracycline Inhibits Recruitment of Hypoxia-inducible Transcription Factors and Suppresses Tumor Cell Migration and Cardiac Angiogenic Response in the Host

机译:蒽环素抑制缺氧诱导型转录因子的募集,抑制宿主中的肿瘤细胞迁移和心肌血管生成反应

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Anthracycline chemotherapeutic agents of the topoisomerase inhibitor family are widely used for the treatment of various tumors. Although targeted tumor tissues are generally situated in a hypoxic environment, the connection between efficacy of anthracycline agents and cellular hypoxia response has not been investigated in depth. Here, we report that doxorubicin (DXR) impairs the transcriptional response of the hypoxia-inducible factor (HIF) by inhibiting the binding of the HIF heterodimer to the consensus -RCGTG- enhancer element. This pleiotropic effect retarded migration of von Hippel-Lindau (VHL)-defective renal cell carcinoma and that of VHL-competent renal cell carcinoma in hypoxia. This effect was accompanied by a coordinated down-regulation of HIF target lysyl oxidase (LOX) family members LOX, LOX-like2 (LOXL2), and LOXL4. Furthermore, DXR suppressed HIF target genes in tumor xenografts, inhibited cardiac induction of HIF targets in rats with acute anemia, and impaired the angiogenic response in the isoproterenol-induced heart failure model, which may account for the clinical fragility of doxorubicin cardiomyopathy. Collectively, these findings highlight the impaired hypoxia response by anthracycline agents affecting both tumors and organs of the cancer host and offer a promising opportunity to develop HIF inhibitors using DXR as a chemical template.
机译:拓扑蛋白酶抑制剂家族的蒽环类化学治疗剂被广泛用于治疗各种肿瘤。虽然靶向肿​​瘤组织通常位于缺氧环境中,但蒽环霉素药剂和细胞缺氧反应的有效性之间的连接尚未深入研究。在这里,我们报告说,多柔比星(DXR)也妨碍通过抑制HIF异源二聚体的结合共识-RCGTG-增强子元件的缺氧诱导因子(HIF)的转录反应。这种抗血液血液(VHL) - 缺氧肾细胞癌及缺氧中VHL主管肾细胞癌的迁移延迟迁移。这种效果伴随着HIF靶溶酶氧化酶(LOX)家族成员LOX,LOX样2(LOXL2)和LOX14的协调下调。此外,DXR抑制了肿瘤异种移植物中的HIF靶基因,抑制了急性贫血大鼠大鼠HIF靶的心脏诱导,并损害了异丙肾上腺素诱导的心力衰竭模型中的血管生成反应,这可能考虑了多柔比蛋白心肌病的临床脆弱性。这些发现,这些发现突出了影响癌症主体的肿瘤和器官的蒽环类药物受损的缺氧响应,并提供了使用DXR作为化学模板开发HIF抑制剂的有希望的机会。

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