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大鼠脑干神经元中对二氧化碳敏感的钾离子通道的表达与共表达

Expression and coexpression of CO2-sensitive Kir channels in brainstem neurons of rats.

作者信息

Wu J, Xu H, Shen W, Jiang C

机构信息

Department of Biology, Georgia State University, 24 Peachtree Center Avenue Atlanta, GA 30302-4010, USA.

出版信息

J Membr Biol. 2004 Feb 1;197(3):179-91. doi: 10.1007/s00232-004-0652-4.

Abstract

Several inward rectifier K(+) (Kir) channels are inhibited by hypercapnic acidosis and may be involved in CO(2) central chemoreception. Among them are Kir1.1, Kir2.3, and Kir4.1. The Kir4.1 is expressed predominantly in the brainstem. Although its CO(2) sensitivity is low, coexpression of Kir4.1 with Kir5.1 in Xenopus oocytes greatly enhances the CO(2)/pH sensitivities of the heteromeric channels. If these Kir channels play a part in the central CO(2) chemosensitivity, they should be expressed in neurons of brainstem cardio-respiratory nuclei. To test this hypothesis, we performed in-situ hybridization experiments in which the expression of Kir1.1, Kir2.3, Kir4.1 and Kir5.1, and coexpression of Kir4.1 and Kir5.1 were studied in brainstem neurons using non-radioactive riboprobes. We found that mRNAs of these Kir channels were present in several brainstem nuclei, especially those involved in cardio-respiratory controls. Strong labeling was observed in the locus coeruleus, ventralateral medulla, parabrachial-Kölliker-Fuse nuclei, solitary tract nucleus, and area postrema. Strong expression was also seen in several cranial motor nuclei, including the nucleus of ambiguus, hypoglossal nucleus, facial nucleus and dorsal vagus motor nucleus. In general, the expression of Kir5.1 and Kir4.1 was much more prominent than that of Kir1.1 and Kir2.3 in all the nuclei. Evidence for the coexpression of Kir4.1 and Kir5.1 was found in a good number of neurons in these nuclei. The expression and coexpression of these CO(2)/pH-sensitive Kir channels suggest that they are likely to contribute to CO(2) chemosensitivity of the brainstem neurons.

摘要

几种内向整流钾离子(Kir)通道可被高碳酸血症性酸中毒抑制,并可能参与二氧化碳的中枢化学感受。其中包括Kir1.1、Kir2.3和Kir4.1。Kir4.1主要在脑干中表达。尽管其对二氧化碳的敏感性较低,但在非洲爪蟾卵母细胞中,Kir4.1与Kir5.1共表达可大大增强异源通道对二氧化碳/pH的敏感性。如果这些Kir通道参与中枢二氧化碳化学感受,它们应该在脑干心肺核团的神经元中表达。为了验证这一假设,我们进行了原位杂交实验,使用非放射性核糖探针研究了Kir1.1、Kir2.3、Kir4.1和Kir5.1在脑干神经元中的表达以及Kir4.1和Kir5.1的共表达情况。我们发现这些Kir通道的信使核糖核酸存在于几个脑干核团中,尤其是那些参与心肺控制的核团。在蓝斑、延髓腹外侧、臂旁-柯利克-富斯核、孤束核和最后区观察到强标记。在几个脑神经运动核团中也观察到强表达,包括疑核、舌下神经核、面神经核和迷走神经背运动核。总体而言,在所有核团中Kir5.1和Kir4.1的表达比Kir1.1和Kir2.3更显著。在这些核团的大量神经元中发现了Kir4.1和Kir5.1共表达的证据。这些对二氧化碳/pH敏感的Kir通道的表达和共表达表明它们可能对脑干神经元的二氧化碳化学感受有贡献。

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