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ATP门控离子通道的核苷酸P2X2受体亚基在介导对缺氧的通气反应中起关键作用。

Pivotal role of nucleotide P2X2 receptor subunit of the ATP-gated ion channel mediating ventilatory responses to hypoxia.

作者信息

Rong Weifang, Gourine Alexander V, Cockayne Debra A, Xiang Zhenghua, Ford Anthony P D W, Spyer K Michael, Burnstock Geoffrey

机构信息

Autonomic Neuroscience Institute and Department of Physiology, Royal Free and University College Medical School, London NW3 2PF, United Kingdom.

出版信息

J Neurosci. 2003 Dec 10;23(36):11315-21. doi: 10.1523/JNEUROSCI.23-36-11315.2003.

Abstract

In mammals, the ventilatory response to decreased oxygen tension in the arterial blood is initiated by excitation of specialized O2-sensitive chemoreceptor cells in the carotid body that release neurotransmitters to activate endings of the sinus nerve afferent fibers. We investigated the role of ATP acting via ionotropic P2X receptors in the carotid body function and ventilatory response to hypoxia in mice. Mice deficient in P2X2 receptor subunit showed a markedly attenuated ventilatory response to hypoxia, whereas the response to hypoxia in P2X3-deficient mice was comparable with that seen in wild-type controls. P2X2 and P2X3 receptor subunit deficiency did not affect the ventilatory responses to hypercapnia. P2X2 subunit deficiency resulted in a dramatic reduction in the responses of the carotid sinus nerve to hypoxia in the in vitro carotid body-sinus nerve preparation. ATP and its stable analog alpha,beta-methyleneATP both evoked rapid excitation of sinus nerve afferents, and the P2 receptor antagonist PPADS (pyridoxal-5'-phosphate-6-azophenyl-2',4'-disulphonic acid) (100 microm) blocked hypoxia-induced increase in sinus nerve discharge. Immunoreactivities for P2X2 and P2X3 subunits were both detected on afferent terminals surrounding clusters of glomus cells in the wild-type animals but were absent in mice deficient in P2X2 and P2X3 receptor subunits. These observations provide the first definitive evidence that, in the carotid body, ATP is a key transmitter released by chemoreceptor cells to activate endings of the sinus nerve afferent fibers. We conclude that P2X receptors containing the P2X2 subunit play a pivotal role in carotid body function and in mediating ventilatory responses to hypoxia.

摘要

在哺乳动物中,动脉血中氧分压降低时的通气反应是由颈动脉体中特化的对氧敏感的化学感受器细胞兴奋引发的,这些细胞释放神经递质以激活窦神经传入纤维的末梢。我们研究了经由离子型P2X受体起作用的ATP在小鼠颈动脉体功能及对低氧通气反应中的作用。缺乏P2X2受体亚基的小鼠对低氧的通气反应明显减弱,而缺乏P2X3的小鼠对低氧的反应与野生型对照相当。P2X2和P2X3受体亚基缺乏并不影响对高碳酸血症的通气反应。在体外颈动脉体-窦神经标本中,P2X2亚基缺乏导致颈动脉窦神经对低氧的反应显著降低。ATP及其稳定类似物α,β-亚甲基ATP均可快速激发窦神经传入纤维,P2受体拮抗剂PPADS(5'-磷酸吡哆醛-6-偶氮苯基-2',4'-二磺酸)(100微摩尔)可阻断低氧诱导的窦神经放电增加。在野生型动物的球细胞簇周围的传入终末上均检测到P2X2和P2X3亚基的免疫反应性,但在缺乏P2X2和P2X3受体亚基的小鼠中则未检测到。这些观察结果提供了首个确凿证据,即在颈动脉体中,ATP是化学感受器细胞释放的关键递质,用于激活窦神经传入纤维的末梢。我们得出结论,含有P2X2亚基的P2X受体在颈动脉体功能及介导对低氧的通气反应中起关键作用。

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