The Department of Molecular and Integrative Neurosciences, The Scripps Research Institute, La Jolla, California, United States of America.
PLoS One. 2011;6(12):e29134. doi: 10.1371/journal.pone.0029134. Epub 2011 Dec 29.
Histamine regulates arousal, circadian rhythms, and thermoregulation. Activation of H3 histamine receptors expressed by preoptic GABAergic neurons results in a decrease of their firing rate and hyperthermia. Here we report that an increase in the A-type K⁺ current in preoptic GABAergic neurons in response to activation of H3 histamine receptors results in decreased firing rate and hyperthermia in mice. The Kv4.2 subunit is required for these actions in spite of the fact that Kv4.2⁻/⁻ preoptic GABAergic neurons display A-type currents and firing characteristics similar to those of wild-type neurons. This electrical remodeling is achieved by robust upregulation of the expression of the Kv4.1 subunit and of a delayed rectifier current. Dynamic clamp experiments indicate that enhancement of the A-type current by a similar amount to that induced by histamine is sufficient to mimic its robust effect on firing rates. These data indicate a central role played by the Kv4.2 subunit in histamine regulation of body temperature and its interaction with pERK1/2 downstream of the H3 receptor. We also reveal that this pathway provides a mechanism for selective modulation of body temperature at the beginning of the active phase of the circadian cycle.
组胺调节觉醒、昼夜节律和体温调节。激活表达于视前区 GABA 能神经元的 H3 组胺受体导致其放电率降低和体温升高。本文报道,激活 H3 组胺受体导致视前区 GABA 能神经元中 A 型钾电流增加,导致小鼠放电率降低和体温升高。尽管 Kv4.2⁻/⁻视前区 GABA 能神经元显示出 A 型电流和与野生型神经元相似的放电特征,但 Kv4.2 亚基对于这些作用是必需的。这种电重塑是通过 Kv4.1 亚基和延迟整流电流的强大上调来实现的。动态箝位实验表明,增强 A 型电流的幅度与组胺诱导的幅度相似,足以模拟其对放电率的强烈影响。这些数据表明 Kv4.2 亚基在组胺调节体温及其与 H3 受体下游的 pERK1/2 的相互作用中发挥重要作用。我们还揭示了该途径为昼夜节律周期活动相开始时选择性调节体温提供了一种机制。