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一种自分泌ATP释放机制调节气道上皮细胞的基础纤毛活动。

An autocrine ATP release mechanism regulates basal ciliary activity in airway epithelium.

作者信息

Droguett Karla, Rios Mariana, Carreño Daniela V, Navarrete Camilo, Fuentes Christian, Villalón Manuel, Barrera Nelson P

机构信息

Department of Physiology, Faculty of Biological Sciences, Pontificia Universidad Católica de Chile, Santiago, Chile.

出版信息

J Physiol. 2017 Jul 15;595(14):4755-4767. doi: 10.1113/JP273996. Epub 2017 Jun 15.

Abstract

KEY POINTS

Extracellular ATP, in association with [Ca ] regulation, is required to maintain basal ciliary beat frequency. Increasing extracellular ATP levels increases ciliary beating in airway epithelial cells, maintaining a sustained response by inducing the release of additional ATP. Extracellular ATP levels in the millimolar range, previously associated with pathophysiological conditions of the airway epithelium, produce a transient arrest of ciliary activity. The regulation of ciliary beat frequency is dependent on ATP release by hemichannels (connexin/pannexin) and P2X receptor activation, the blockage of which may even stop ciliary movement. The force exerted by cilia, measured by atomic force microscopy, is reduced following extracellular ATP hydrolysis. This result complements the current understanding of the ciliary beating regulatory mechanism, with special relevance to inflammatory diseases of the airway epithelium that affect mucociliary clearance.

ABSTRACT

Extracellular nucleotides, including ATP, are locally released by the airway epithelium and stimulate ciliary activity in a [Ca ] -dependent manner after mechanical stimulation of ciliated cells. However, it is unclear whether the ATP released is involved in regulating basal ciliary activity and mediating changes in ciliary activity in response to chemical stimulation. In the present study, we evaluated ciliary beat frequency (CBF) and ciliary beating forces in primary cultures from mouse tracheal epithelium, using videomicroscopy and atomic force microscopy (AFM), respectively. Extracellular ATP levels and [Ca ] were measured by luminometric and fluorimetric assays, respectively. Uptake of ethidium bromide was measured to evaluate hemichannel functionality. We show that hydrolysis of constitutive extracellular ATP levels with apyrase (50 U ml ) reduced basal CBF by 45% and ciliary force by 67%. The apyrase effect on CBF was potentiated by carbenoxolone, a hemichannel inhibitor, and oxidized ATP, an antagonist used to block P2X7 receptors, which reduced basal CBF by 85%. Additionally, increasing extracellular ATP levels (0.1-100 μm) increased CBF, maintaining a sustained response that was suppressed in the presence of carbenoxolone. We also show that high levels of ATP (1 mm), associated with inflammatory conditions, lowered basal CBF by reducing [Ca ] and hemichannel functionality. In summary, we provide evidence indicating that airway epithelium ATP release is the molecular autocrine mechanism regulating basal ciliary activity and is also the mediator of the ciliary response to chemical stimulation.

摘要

关键点

细胞外ATP与[Ca]调节相关,是维持基础纤毛搏动频率所必需的。细胞外ATP水平升高会增加气道上皮细胞的纤毛摆动,通过诱导额外ATP的释放维持持续反应。毫摩尔范围内的细胞外ATP水平,以前与气道上皮的病理生理状况相关,会使纤毛活动短暂停止。纤毛搏动频率的调节取决于半通道(连接蛋白/泛连接蛋白)释放ATP以及P2X受体激活,阻断这些甚至可能使纤毛运动停止。通过原子力显微镜测量,细胞外ATP水解后纤毛施加的力降低。这一结果补充了当前对纤毛摆动调节机制的理解,与影响黏液纤毛清除的气道上皮炎症性疾病特别相关。

摘要

包括ATP在内的细胞外核苷酸由气道上皮局部释放,并在机械刺激纤毛细胞后以[Ca]依赖性方式刺激纤毛活动。然而,尚不清楚释放的ATP是否参与调节基础纤毛活动以及介导对化学刺激的纤毛活动变化。在本研究中,我们分别使用视频显微镜和原子力显微镜(AFM)评估了小鼠气管上皮原代培养物中的纤毛搏动频率(CBF)和纤毛摆动力量。分别通过发光测定法和荧光测定法测量细胞外ATP水平和[Ca]。测量溴化乙锭的摄取以评估半通道功能。我们发现用ATP酶(50 U/ml)水解组成性细胞外ATP水平会使基础CBF降低45%,纤毛力量降低67%。ATP酶对CBF的作用被半通道抑制剂甘草次酸和用于阻断P2X7受体的拮抗剂氧化ATP增强,氧化ATP使基础CBF降低85%。此外,增加细胞外ATP水平(0.1 - 100 μM)会增加CBF,维持在甘草次酸存在下被抑制的持续反应。我们还表明,与炎症状态相关的高水平ATP(1 mM)通过降低[Ca]和半通道功能降低基础CBF。总之,我们提供的证据表明气道上皮ATP释放是调节基础纤毛活动的分子自分泌机制,也是纤毛对化学刺激反应的介质。

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