Department of Neurology, Shanghai Pudong New Area Zhoupu Hospital, Shanghai 201138, PR China.
Cell Calcium. 2013 Mar;53(3):195-203. doi: 10.1016/j.ceca.2012.11.014. Epub 2012 Dec 20.
Curcumin, a major active compound of Curcuma longa, has been reported to have potent neuroprotective activities. However to date, the relevant mechanisms still remain unclear. In this study, we report that curcumin selectively inhibits L-type Ca(2+) channel currents in cultured rat hippocampal neurons. Whole-cell currents were recorded using 10mM barium as a charge carrier. Curcumin reversibly inhibited high-voltage-gated Ca(2+) channel (HVGCC) currents (IBa) in a concentration-dependent manner but had no apparent effects on the cells treated with nifedipine, a specific L-type Ca(2+) channel blocker. Curcumin did not markedly affect the activation of L-type Ca(2+) channels while significantly shifted the inactivation curve in the hyperpolarizing direction. Pretreatment of cells with the classical and novel PKC antagonists GF109203X and calphostin C completely abolished curcumin-induced IBa inhibition, whereas the classical PKC antagonist Gö6976 or inhibition of PKA activity elicited no such effects. Moreover, the curcumin-induced IBa response was abolished by intracellular application of the PKC-θ inhibitory peptide PKC-θ-IP or by siRNA knockdown of PKC-θ in cultured rat hippocampal neurons. In these neurons, novel isoforms of PKC including delta (PKC-δ), epsilon (PKC-ɛ) and theta (PKC-θ), but not eta (PKC-η), were endogenously expressed. Taken together, these results suggest that curcumin selectively inhibits IBavia a novel PKC-θ-dependent pathway, which could contribute to its neuroprotective effects in rat hippocampal neurons.
姜黄素是姜黄的主要活性化合物,已被报道具有很强的神经保护活性。然而,迄今为止,相关机制仍不清楚。在本研究中,我们报告姜黄素选择性抑制培养的大鼠海马神经元中的 L 型钙(Ca2+)通道电流。使用 10mM 钡作为载流子记录全细胞电流。姜黄素以浓度依赖性方式可逆抑制高电压门控 Ca2+通道(HVGCC)电流(IBa),但对用硝苯地平处理的细胞无明显影响,硝苯地平是一种特定的 L 型 Ca2+通道阻滞剂。姜黄素对 L 型 Ca2+通道的激活没有明显影响,但显著将失活曲线向超极化方向移动。用经典和新型 PKC 拮抗剂 GF109203X 和 calphostin C 预处理细胞可完全消除姜黄素诱导的 IBa 抑制,而经典 PKC 拮抗剂 Gö6976 或 PKA 活性抑制则没有这种作用。此外,用 PKC-θ 抑制肽 PKC-θ-IP 或用 PKC-θ 的 siRNA 敲低可消除姜黄素诱导的 IBa 反应在培养的大鼠海马神经元中。在这些神经元中,新型 PKC 同工型包括 delta(PKC-δ)、epsilon(PKC-ɛ)和 theta(PKC-θ),但不包括 eta(PKC-η),内源性表达。综上所述,这些结果表明姜黄素选择性抑制 IBavia 一种新型的 PKC-θ 依赖性途径,这可能有助于其在大鼠海马神经元中的神经保护作用。