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Marked and rapid effects of pharmacological HIF-2 α antagonism on hypoxic ventilatory control

机译:药理学HIF-2 <粗体>α对缺氧通气控制的拮抗作用的标记和快速影响

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Hypoxia-inducible factor (HIF) is strikingly upregulated in many types of cancer, and there is great interest in applying inhibitors of HIF as anticancer therapeutics. The most advanced of these are small molecules that target the HIF-2 isoform through binding the PAS-B domain of HIF-2α. These molecules are undergoing clinical trials with promising results in renal and other cancers where HIF-2 is considered to be driving growth. Nevertheless, a central question remains as to whether such inhibitors affect physiological responses to hypoxia at relevant doses. Here, we show that pharmacological HIF-2α inhibition with PT2385, at doses similar to those reported to inhibit tumor growth, rapidly impaired ventilatory responses to hypoxia, abrogating both ventilatory acclimatization and carotid body cell proliferative responses to sustained hypoxia. Mice carrying a HIF-2α PAS-B S305M mutation that disrupts PT2385 binding, but not dimerization with HIF-1β, did not respond to PT2385, indicating that these effects are on-target. Furthermore, the finding of a hypomorphic ventilatory phenotype in untreated HIF-2α S305M mutant mice suggests a function for the HIF-2α PAS-B domain beyond heterodimerization with HIF-1β. Although PT2385 was well tolerated, the findings indicate the need for caution in patients who are dependent on hypoxic ventilatory drive.
机译:缺氧诱导因子(HIF)在许多类型的癌症中令人惊讶地上调,并且对施用HIF作为抗癌治疗的抑制剂非常感兴趣。这些最先进的是通过结合HIF-2α的PAS-B结构域来靶向HIF-2同种型的小分子。这些分子正在进行临床试验,其中有希望的肾脏和其他癌症,其中HIF-2被认为是驾驶生长的。尽管如此,核心问题仍然是这种抑制剂是否对相关剂量的缺氧影响生理反应。在这里,我们表明,用PT2385的药理学HIF-2α抑制,类似于据报道抑制肿瘤生长的剂量,对缺氧的呼吸反应迅速受损,消除了对持续缺氧的呼吸均匀性和颈动脉体细胞增殖反应。携带HIF-2αPas-B S305M突变的小鼠破坏PT2385结合,但与HIF-1β的二聚体无响应PT2385,表明这些效果是目标。此外,在未处理的HIF-2αS305M突变小鼠中寻找在未处理的HIF-2αS305M突变小鼠中的抗晶状体型表型表明HIF-2αPAS-B域的功能超出了与HIF-1β的异二聚化。虽然PT2385耐受良好,但调查结果表明依赖于缺氧通气驱动的患者中谨慎的需要。

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