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蛋白激酶在大鼠颈动脉体 II 型胶质细胞中 5-HT-[Ca ] -连接蛋白-1 信号通路中的作用证据。

Evidence for protein kinase involvement in the 5-HT-[Ca ] -pannexin-1 signalling pathway in type II glial cells of the rat carotid body.

机构信息

Department of Biology, McMaster University, Hamilton, Ontario, Canada.

出版信息

Exp Physiol. 2019 Feb;104(2):244-253. doi: 10.1113/EP087411. Epub 2018 Dec 11.

Abstract

NEW FINDINGS

What is the central question of this study? The mammalian carotid body (CB) is a peripheral chemoreceptor organ involved in O and CO /H homeostasis. Recent studies suggest that 5-HT, released from CB receptor cells, can stimulate adjacent glial-like type II cells, leading to an increase in intracellular Ca (Δ[Ca ] ) and activation of ATP-permeable pannexin-1 (Panx-1) channels. The aim of this study was to elucidate the role of protein kinases in the 5-HT-[Ca ] -Panx-1 signalling pathway. What is the main finding and its importance? Src family kinase and protein kinase A, acting downstream from Δ[Ca ] , played central roles in 5-HT-mediated Panx-1 channel activation. This provides new insight into mechanisms regulating CB excitation, especially in pathophysiological conditions.

ABSTRACT

Chemoreceptor (type I) cells of the rodent carotid body (CB) synthesize and release several neurotransmitters/neuromodulators, including 5-hydroxytryptamine (5-HT), implicated in enhanced CB excitation after exposure to chronic intermittent hypoxia, e.g. sleep apnoea. However, recent studies suggest that 5-HT can robustly stimulate adjacent glial-like type II cells via ketanserin-sensitive 5-HT receptors, leading to intracellular Ca elevation (Δ[Ca ] ) and activation of ATP-permeable pannexin-1 (Panx-1) channels. Using dissociated rat CB cultures, we investigated the role of protein kinases in the intracellular signalling pathways in type II cells. In isolated type II cells, 5-HT activated a Panx-1-like inward current (I ) that was reversibly inhibited by the Src family kinase inhibitor PP2 (1 μm), but not by its inactive analogue, PP3 (1 μm). Moreover, I was reversibly inhibited (>90%) by H89 (1 μm), a protein kinase A blocker, whereas the protein kinase C blocker GF109203X (2 μm) was largely ineffective. In contrast, the P2Y2R agonist UTP (100 μm) activated Panx-1-like currents that were reversibly inhibited (∼60%) by either H89 or GF109203X. Using fura-2 spectrofluorimetry, the 5-HT-induced Δ[Ca ] was unaffected by PP2, H89 and GF109293X, suggesting that the kinases acted downstream of the Ca rise. Given that intracellular Ca chelation was previously shown to block receptor-mediated Panx-1 current activation in type II cells, these data suggest that CB neuromodulators use overlapping, but not necessarily identical, signalling pathways to activate Panx-1 channels and release ATP, a CB excitatory neurotransmitter. In conclusion, these studies provide new mechanistic insight into 5-HT signalling in the CB that has pathophysiological relevance.

摘要

新发现

这项研究的核心问题是什么?哺乳动物颈动脉体(CB)是参与 O 和 CO / H 动态平衡的外周化学感受器器官。最近的研究表明,5-HT 从 CB 受体细胞释放,可以刺激相邻的神经胶质样 II 型细胞,导致细胞内 Ca(Δ[Ca ])增加和激活通透性的 pannexin-1(Panx-1)通道。本研究旨在阐明蛋白激酶在 5-HT-[Ca ]-Panx-1 信号通路中的作用。主要发现及其重要性是什么?Src 家族激酶和蛋白激酶 A,作为 Δ[Ca ]的下游,在 5-HT 介导的 Panx-1 通道激活中发挥核心作用。这为调节 CB 兴奋的机制提供了新的见解,特别是在病理生理条件下。

摘要

啮齿动物颈动脉体(CB)的化学感受器(I 型)细胞合成和释放几种神经递质/神经调质,包括 5-羟色胺(5-HT),其在慢性间歇性低氧暴露后增强 CB 兴奋,例如睡眠呼吸暂停。然而,最近的研究表明,5-HT 可以通过酮色林敏感的 5-HT 受体强烈刺激相邻的神经胶质样 II 型细胞,导致细胞内 Ca 升高(Δ[Ca ])和激活 ATP 通透性 pannexin-1(Panx-1)通道。使用分离的大鼠 CB 培养物,我们研究了蛋白激酶在 II 型细胞中细胞内信号通路中的作用。在分离的 II 型细胞中,5-HT 激活了 Panx-1 样内向电流(I),该电流可被Src 家族激酶抑制剂 PP2(1 μm)可逆抑制,但不能被其非活性类似物 PP3(1 μm)抑制。此外,I 可被蛋白激酶 A 抑制剂 H89(1 μm)可逆抑制(>90%),而蛋白激酶 C 抑制剂 GF109203X(2 μm)则基本无效。相反,P2Y2R 激动剂 UTP(100 μm)激活 Panx-1 样电流,该电流可被 H89 或 GF109203X 可逆抑制(约 60%)。使用 fura-2 荧光光谱法,5-HT 诱导的 Δ[Ca ]不受 PP2、H89 和 GF109293X 的影响,表明激酶作用于 Ca 升高的下游。鉴于细胞内 Ca 螯合先前显示可阻断受体介导的 II 型细胞 Panx-1 电流激活,这些数据表明 CB 神经调质使用重叠但不一定相同的信号通路来激活 Panx-1 通道并释放 CB 兴奋性神经递质 ATP。总之,这些研究为 CB 中 5-HT 信号提供了新的机制见解,具有病理生理学意义。

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