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Design and synthesis of novel small-molecule inhibitors of the hypoxia inducible factor pathway

机译:新型缺氧诱导因子途径小分子抑制剂的设计与合成

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摘要

Hypoxia, a reduction in partial oxygen pressure, is a salient property of solid tumors. Hypoxia drives malignant progression and metastasis in tumors and participates in tumor resistance to radio- and chemotherapies. Hypoxia activates the hypoxia-inducible factor (HIF) family of transcription factors, which induce target genes that regulate adaptive biological processes such as anaerobic metabolism, cell motility, and angiogenesis. Clinical evidence has demonstrated that expression of HIF-1 is strongly associated with poor patient prognosis and activation of HIF-1 contributes to malignant behavior and therapeutic resistance. Consequently, HIF-1 has become an important therapeutic target for inhibition by small molecules. Herein, we describe the design and synthesis of small molecules that inhibit the HIF-1 signaling pathway. Many of these compounds exhibit inhibitory activity in the nanomolar range. Separate mechanistic studies indicate that these inhibitors do not alter HIF-1 levels but interfere with the ability of HIF-1α/HIF-1β to interact with cofactors p300/CBP to form an active transcriptional complex. (Figure presented)
机译:缺氧,部分氧气压力的降低,是实体瘤的显着特征。低氧驱动肿瘤的恶性进展和转移,并参与肿瘤对放射线和化学疗法的抗性。缺氧激活了转录因子的低氧诱导因子(HIF)家族,后者诱导调控适应性生物过程(如无氧代谢,细胞运动性和血管生成)的靶基因。临床证据表明,HIF-1的表达与患者预后不良密切相关,HIF-1的激活有助于恶性行为和治疗耐药性。因此,HIF-1已成为抑制小分子的重要治疗靶标。在这里,我们描述了抑制HIF-1信号通路的小分子的设计和合成。这些化合物中有许多在纳摩尔范围内均表现出抑制活性。单独的机理研究表明,这些抑制剂不会改变HIF-1水平,但会干扰HIF-1α/HIF-1β与辅因子p300 / CBP相互作用形成活性转录复合物的能力。 (图示)

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