Centre for the Cellular Basis of Behaviour, Institute of Psychiatry, King's College London, London, UK.
Genes Brain Behav. 2010 Aug;9(6):648-57. doi: 10.1111/j.1601-183X.2010.00595.x. Epub 2010 May 12.
Understanding of the molecular basis of long-term fear memory (fear LTM) formation provides targets in the treatment of emotional disorders. Ca(2+)/calmodulin-dependent protein kinase II (CaMKII) is one of the key synaptic molecules involved in fear LTM formation. There are two endogenous inhibitor proteins of CaMKII, CaMKII N alpha and N beta, which can regulate CaMKII activity in vitro. However, the physiological role of these endogenous inhibitors is not known. Here, we have investigated whether CaMKII N beta protein expression is regulated after contextual fear conditioning or exposure to a novel context. Using a novel CaMKII N beta-specific antibody, CaMKII N beta expression was analysed in the naïve mouse brain as well as in the amygdala and hippocampus after conditioning and context exposure. We show that in naïve mouse forebrain CaMKII N beta protein is expressed at its highest levels in olfactory bulb, prefrontal and piriform cortices, amygdala and thalamus. The protein is expressed both in dendrites and cell bodies. CaMKII N beta expression is rapidly and transiently up-regulated in the hippocampus after context exposure. In the amygdala, its expression is regulated only by contextual fear conditioning and not by exposure to a novel context. In conclusion, we show that CaMKII N beta expression is differentially regulated by novelty and contextual fear conditioning, providing further insight into molecular basis of fear LTM.
理解长期恐惧记忆(恐惧 LTM)形成的分子基础为情绪障碍的治疗提供了靶点。钙/钙调蛋白依赖性蛋白激酶 II(CaMKII)是参与恐惧 LTM 形成的关键突触分子之一。CaMKII 有两种内源性抑制蛋白,即 CaMKII N alpha 和 N beta,它们可以在体外调节 CaMKII 的活性。然而,这些内源性抑制剂的生理作用尚不清楚。在这里,我们研究了在情境恐惧条件作用或暴露于新环境后,CaMKII N beta 蛋白的表达是否受到调节。使用一种新的 CaMKII N beta 特异性抗体,我们分析了未受训练的小鼠大脑以及条件作用和环境暴露后杏仁核和海马中的 CaMKII N beta 表达。我们发现,在未受训练的小鼠前脑中,CaMKII N beta 蛋白在嗅球、前额叶和梨状皮质、杏仁核和丘脑表达水平最高。该蛋白表达于树突和细胞体中。在环境暴露后,海马中的 CaMKII N beta 表达迅速而短暂地上调。在杏仁核中,其表达仅受情境恐惧条件作用调节,而不受新环境暴露调节。总之,我们表明 CaMKII N beta 表达受到新奇和情境恐惧条件作用的差异调节,为恐惧 LTM 的分子基础提供了进一步的见解。