首页> 外文期刊>The Journal of Physiology >Role of the hyperpolarization-activated current Ih in somatosensory neurons.
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Role of the hyperpolarization-activated current Ih in somatosensory neurons.

机译:超极化激活电流Ih在体感神经元中的作用。

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The hyperpolarization-activated current (I(h)) is an inward current activated by hyperpolarization from the resting potential and is an important modulator of action potential firing frequency in many excitable cells. Four hyperpolarization-activated, cyclic nucleotide-modulated subunits, HCN1-4, can form I(h) ion channels. In the present study we investigated the function of I(h) in primary somatosensory neurons. Neuronal firing in response to current injection was promoted by elevating intracellular cAMP levels and inhibited by blockers of I(h), suggesting that I(h) plays a critical role in modulating firing frequency. The properties of I(h) in three size classes of sensory neurons were next investigated. In large neurons I(h) was fast activating and insensitive to elevations in cAMP, consistent with expression of HCN1. I(h) was ablated in most large neurons in HCN1(-/-) mice. In small neurons a slower activating, cAMP-sensitive I(h) was observed, as expected for expression of HCN2 and/or HCN4. Consistent with this, I(h) in small neurons was unchanged in HCN1(-/-) mice. In a neuropathic pain model HCN1(-/-) mice exhibited substantially less cold allodynia than wild-type littermates, suggesting an important role for HCN1 in neuropathic pain. This work shows that I(h) is an important modulator of action potential generation in somatosensory neurons.
机译:超极化激活电流(I(h))是由超极化从静止电位激活的内向电流,并且是许多可激发细胞中动作电位激发频率的重要调制器。四个超极化激活的环状核苷酸调节的亚基HCN1-4可以形成I(h)离子通道。在本研究中,我们调查了I(h)在原代体感神经元中的功能。通过提高细胞内cAMP水平来促进响应当前注射的神经元放电,并被I(h)的阻滞剂抑制,这表明I(h)在调节放电频率中起关键作用。接下来研究三类感觉神经元中I(h)的特性。在大神经元中,I(h)快速激活并且对cAMP升高不敏感,与HCN1的表达一致。 I(h)在HCN1(-/-)小鼠的大多数大型神经元中被消融。在小神经元中,观察到较慢的激活,对cAMP敏感的I(h),如预期的HCN2和/或HCN4的表达。与此一致,HCN1(-/-)小鼠中小神经元中的I(h)不变。在神经性疼痛模型中,HCN1(-/-)小鼠比野生型同窝小鼠表现出的冷异常性疼痛明显更少,这提示HCN1在神经性疼痛中的重要作用。这项工作表明,I(h)是体感神经元中动作电位生成的重要调节剂。

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