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SK 通道的减少导致心力衰竭期间下丘脑大细胞神经元活动增加。

A reduction in SK channels contributes to increased activity of hypothalamic magnocellular neurons during heart failure.

机构信息

Department of Physiology, Augusta University, Augusta, GA, USA.

Anatomy, Physiology & Pharmacology, Auburn University, Auburn, AL, USA.

出版信息

J Physiol. 2017 Oct 15;595(20):6429-6442. doi: 10.1113/JP274730. Epub 2017 Aug 2.

Abstract

KEY POINTS

Small conductance Ca -activated K (SK) channels play an important role in regulating the excitability of magnocellular neurosecretory cells (MNCs). Although an increased SK channel function contributes to adaptive physiological responses, it remains unknown whether changes in SK channel function/expression contribute to exacerbated MNC activity under disease conditions. We show that the input-output function of MNCs in heart failure (HF) rats is enhanced. Moreover, the SK channel blocker apamin enhanced the input-output function in sham, although not in HF rats. We found that both the after-hyperpolarizing potential magnitude and the underlying apamin-sensitive I are blunted in MNCs from HF rats. The magnitude of spike-induced increases in intracellular Ca levels was not affected in MNCs of HF rats. We found a diminished expression of SK2/SK3 channel subunit mRNA expression in the supraoptic nucleus of HF rats. Our studies suggest that a reduction in SK channel expression, but not changes in Ca -mediated activation of SK channels, contributes to exacerbated MNC activity in HF rats.

ABSTRACT

Small conductance Ca -activated K channels (SK) play an important role in regulating the activity of magnocellular neurosecretory cells (MNCs) and hormone release from the posterior pituitary. Moreover, enhanced SK activity contributes to the adaptive responses of MNCs to physiological challenge, such as lactation. Nevertheless, whether changes in SK function/expression contribute to exacerbated MNC activity during diseases such as heart failure (HF) remains unknown. In the present study, we used a combination of patch clamp electrophysiology, confocal Ca imaging and molecular biology in a rat model of ischaemic HF. We found that the input-output function of MNCs was enhanced in HF compared to sham rats. Moreover, although the SK blocker apamin (200 nm) strengthened the input-output function in sham rats, it failed to have an effect in HF rats. The magnitude of the after-hyperpolarizing potential (AHP) following a train of spikes and the underlying apamin-sensitive I were blunted in MNCs from HF rats. However, spike-induced increases in intracellular Ca were not affected in the MNCs of HF rats. Real-time PCR measurements of SK channel subunits mRNA in supraoptic nucleus punches revealed a diminished expression of SK2/SK3 subunits in HF compared to sham rats. Together, our studies demonstrate that MNCs from HF rats exhibit increased membrane excitability and an enhanced input-output function, and also that a reduction in SK channel-mediated, apamin-sensitive AHP is a critical contributing mechanism. Moreover, our results suggest that the reduced AHP is related to a down-regulation of SK2/SK3 channel subunit expression but not the result of a blunted activity-dependent intracellular Ca increase following a burst of action potentials.

摘要

要点

小电导钙激活钾(SK)通道在调节大细胞神经分泌细胞(MNC)的兴奋性方面起着重要作用。尽管 SK 通道功能的增加有助于适应性生理反应,但尚不清楚 SK 通道功能/表达的变化是否会导致疾病状态下 MNC 活性的加剧。我们发现心力衰竭(HF)大鼠的 MNC 输入-输出功能增强。此外,尽管 SK 通道阻滞剂 apamin 增强了 sham 大鼠的输入-输出功能,但对 HF 大鼠没有作用。我们发现 HF 大鼠 MNC 中的超极化后电位幅度和潜在的 apamin 敏感 I 减弱。HF 大鼠 MNC 中,由尖峰诱导的细胞内 Ca 水平增加的幅度没有受到影响。我们发现 HF 大鼠的视上核中 SK2/SK3 通道亚基 mRNA 表达减少。我们的研究表明,SK 通道表达的减少,但不是 Ca 介导的 SK 通道激活的变化,导致 HF 大鼠 MNC 活性的加剧。

摘要

小电导钙激活钾通道(SK)在调节大细胞神经分泌细胞(MNC)的活性和垂体后叶激素释放方面起着重要作用。此外,增强的 SK 活性有助于 MNC 对生理挑战(如哺乳)的适应性反应。然而,在心力衰竭(HF)等疾病中,SK 功能/表达的变化是否导致 MNC 活性加剧仍不清楚。在本研究中,我们使用了一种在缺血性 HF 大鼠模型中结合膜片钳电生理学、共聚焦 Ca 成像和分子生物学的方法。我们发现与 sham 大鼠相比,HF 大鼠的 MNC 输入-输出功能增强。此外,尽管 SK 阻断剂 apamin(200nm)增强了 sham 大鼠的输入-输出功能,但对 HF 大鼠没有作用。HF 大鼠 MNC 中的超极化后电位(AHP)幅度和潜在的 apamin 敏感 I 在刺激后减弱。然而,HF 大鼠 MNC 中的尖峰诱导的细胞内 Ca 增加没有受到影响。在视上核打孔中对 SK 通道亚基 mRNA 的实时 PCR 测量显示,与 sham 大鼠相比,HF 大鼠的 SK2/SK3 亚基表达减少。总之,我们的研究表明 HF 大鼠的 MNC 表现出膜兴奋性增加和输入-输出功能增强,并且 SK 通道介导的、apamin 敏感的 AHP 减少是一个关键的贡献机制。此外,我们的结果表明,AHP 的降低与 SK2/SK3 通道亚基表达的下调有关,而不是动作电位爆发后细胞内 Ca 增加的活性依赖性减弱的结果。

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