Ji Huifang, Hougaard Charlotte, Herrik Kjartan Frisch, Strøbaek Dorte, Christophersen Palle, Shepard Paul D
Department of Psychiatry, Maryland Psychiatric Research Center, University of Maryland School of Medicine, Baltimore, MD 21228, USA.
Eur J Neurosci. 2009 May;29(9):1883-95. doi: 10.1111/j.1460-9568.2009.06735.x. Epub 2009 Apr 20.
Small conductance Ca(2+) -activated K(+) (SK) channels play a prominent role in modulating the spontaneous activity of dopamine (DA) neurons as well as their response to synaptically-released glutamate. SK channel gating is dependent on Ca(2+) binding to constitutively bound calmodulin, which itself is subject to endogenous and exogenous modulation. In the present study, patch-clamp recording techniques were used to examine the relationship between the apparent Ca(2+) affinity of cloned SK3 channels expressed in cultured human embryonic kidney 293 cells and the excitability of DA neurons in slices from rat substantia nigra using the positive and negative SK channel modulators, 6,7-dichloro-1H-indole-2,3-dione-3-oxime and R-N-(benzimidazol-2-yl)-1,2,3,4-tetrohydro-1-naphtylamine. Increasing the apparent Ca(2+) affinity of SK channels decreased the responsiveness of DA neurons to depolarizing current pulses, enhanced spike frequency adaptation and slowed spontaneous firing, effects attributable to an increase in the amplitude and duration of an apamin-sensitive afterhyperpolarization. In contrast, decreasing the apparent Ca(2+) affinity of SK channels enhanced DA neuronal excitability and changed the firing pattern from a pacemaker to an irregular or bursting discharge. Both the reduction in apparent Ca(2+) affinity and the bursting associated with negative SK channel modulation were gradually surmounted by co-application of the positive SK channel modulator. These results underscore the importance of SK channels in 'tuning' the excitability of DA neurons and demonstrate that gating modulation, in a manner analogous to physiological regulation of SK channels in vivo, represents a means of altering the response of DA neurons to membrane depolarization.
小电导钙激活钾(SK)通道在调节多巴胺(DA)能神经元的自发活动及其对突触释放谷氨酸的反应中起重要作用。SK通道的门控依赖于钙与组成性结合的钙调蛋白结合,而钙调蛋白本身会受到内源性和外源性调节。在本研究中,使用膜片钳记录技术,利用SK通道的正负调节剂6,7-二氯-1H-吲哚-2,3-二酮-3-肟和R-N-(苯并咪唑-2-基)-1,2,3,4-四氢-1-萘胺,研究了在培养的人胚肾293细胞中表达的克隆SK3通道的表观钙亲和力与大鼠黑质切片中DA能神经元兴奋性之间的关系。增加SK通道的表观钙亲和力会降低DA能神经元对去极化电流脉冲的反应性,增强动作电位频率适应性并减慢自发放电,这些效应归因于蜂毒明肽敏感的超极化后电位的幅度和持续时间增加。相反,降低SK通道的表观钙亲和力会增强DA能神经元的兴奋性,并将放电模式从起搏器模式转变为不规则或爆发性放电。同时应用正性SK通道调节剂可逐渐克服表观钙亲和力的降低以及与负性SK通道调节相关的爆发性放电。这些结果强调了SK通道在“调节”DA能神经元兴奋性中的重要性,并表明门控调节类似于体内SK通道的生理调节,是改变DA能神经元对膜去极化反应的一种方式。
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