首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: Rapid direct activity assays for Smoothened reveal Hedgehog pathway regulation by membrane cholesterol and extracellular sodium
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PNAS Plus: Rapid direct activity assays for Smoothened reveal Hedgehog pathway regulation by membrane cholesterol and extracellular sodium

机译:PNAS Plus:快速直接活性的平滑化实验揭示了膜胆固醇和细胞外钠对刺猬信号通路的调控

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摘要

Hedgehog signaling specifies tissue patterning and renewal, and pathway components are commonly mutated in certain malignancies. Although central to ensuring appropriate pathway activity in all Hedgehog-responsive cells, how the transporter-like receptor Patched1 regulates the seven-transmembrane protein Smoothened remains mysterious, partially due to limitations in existing tools and experimental systems. Here we employ direct, real-time, biochemical and physiology-based approaches to monitor Smoothened activity in cellular and in vitro contexts. Patched1–Smoothened coupling is rapid, dynamic, and can be recapitulated without cilium-specific proteins or lipids. By reconstituting purified Smoothened in vitro, we show that cholesterol within the bilayer is sufficient for constitutive Smoothened activation. Cholesterol effects occur independently of the lipid-binding Smoothened extracellular domain, a region that is dispensable for Patched1–Smoothened coupling. Finally, we show that Patched1 specifically requires extracellular Na+ to regulate Smoothened in our assays, raising the possibility that a Na+ gradient provides the energy source for Patched1 catalytic activity. Our work suggests a hypothesis wherein Patched1, chemiosmotically driven by the transmembrane Na+ gradient common to metazoans, regulates Smoothened by shielding its heptahelical domain from cholesterol, or by providing an inhibitor that overrides this cholesterol activation.
机译:刺猬信号指定组织模式和更新,并且通路成分通常在某些恶性肿瘤中发生突变。尽管对于确保所有对Hedgehog应答的细胞具有适当的通路活性至关重要,但转运蛋白样受体Patched1如何调节七跨膜蛋白“平滑化”仍然是个谜,部分原因是现有工具和实验系统的局限性。在这里,我们采用直接的,实时的,基于生物化学和生理学的方法来监测细胞和体外环境中的平滑化活动。 Patched1–Smoothened耦合快速,动态,可以重现,而无纤毛特异性蛋白或脂质。通过在体外重构纯化的Smoothened,我们显示出双层内的胆固醇足以进行本构的Smoothened活化。胆固醇的作用独立于脂质结合的平滑细胞外结构域,该区域对于Patched1–Smoothened偶联是必不可少的。最后,我们显示Patched1在我们的测定中特别需要细胞外Na + 来调节平滑化,从而提高了Na + 梯度为Patched1催化活性提供能量来源的可能性。我们的工作提出了一个假说,其中由后生动物跨膜Na + 梯度化学驱动的Patched1通过屏蔽其七螺旋结构域免受胆固醇的作用或通过提供一种抑制该胆固醇活化作用的抑制剂来调节平滑。

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