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Small-molecule inhibitors reveal multiple strategies for Hedgehog pathway blockade

机译:小分子抑制剂揭示了刺猬途径阻断的多种策略

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摘要

Inappropriate activation of the Hedgehog (Hh) signaling pathway has been implicated in a diverse spectrum of cancers, and its pharmacological blockade has emerged as an anti-tumor strategy. While nearly all known Hh pathway antagonists target the transmembrane protein Smoothened (Smo), small molecules that suppress downstream effectors could more comprehensively remediate Hh pathway-dependent tumors. We report here four Hh pathway antagonists that are epistatic to the nucleocytoplasmic regulator Suppressor of Fused [Su(fu)], including two that can inhibit Hh target gene expression induced by overexpression of the Gli transcription factors. Each inhibitor has a unique mechanism of action, and their phenotypes reveal that Gli processing, Gli activation, and primary cilia formation are pharmacologically targetable. We further establish the ability of certain compounds to block the proliferation of cerebellar granule neuron precursors expressing an oncogenic form of Smo, and we demonstrate that Hh pathway inhibitors can have tissue-specific activities. These antagonists therefore constitute a valuable set of chemical tools for interrogating downstream Hh signaling mechanisms and for developing chemotherapies against Hh pathway-related cancers.
机译:刺猬(Hh)信号通路的不适当激活已牵涉到各种各样的癌症,其药理封锁已成为一种抗肿瘤策略。虽然几乎所有已知的Hh途径拮抗剂都靶向跨膜蛋白平滑化(Smo),但是抑制下游效应子的小分子可以更全面地修复Hh途径依赖性肿瘤。我们在这里报告了四种Hh途径拮抗剂,它们对融合[Su(fu)]的核质调节剂抑制因子具有上调作用,其中两种可以抑制由Gli转录因子的过表达诱导的Hh靶基因表达。每种抑制剂都有独特的作用机理,它们的表型表明,Gli加工,Gli活化和初级纤毛形成在药理上是可靶向的。我们进一步建立某些化合物阻止表达Smo致癌形式的小脑颗粒神经元前体增殖的能力,并且我们证明Hh途径抑制剂可以具有组织特异性活性。因此,这些拮抗剂构成了一组有价值的化学工具,用于询问下游的Hh信号传导机制并开发针对Hh途径相关癌症的化学疗法。

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