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亨廷顿舞蹈病大脑中希波钙蛋白表达减少,这在原代神经元中评估时,并不构成纹状体神经元易损性增加的原因。

Diminished hippocalcin expression in Huntington's disease brain does not account for increased striatal neuron vulnerability as assessed in primary neurons.

作者信息

Rudinskiy Nikita, Kaneko Yoshio A, Beesen Ayshe Ana, Gokce Ozgun, Régulier Etienne, Déglon Nicole, Luthi-Carter Ruth

机构信息

Brain Mind Institute, Ecole Polytechnique Fédérale de Lausanne, Lausanne, Switzerland.

出版信息

J Neurochem. 2009 Oct;111(2):460-72. doi: 10.1111/j.1471-4159.2009.06344.x. Epub 2009 Aug 17.

Abstract

Hippocalcin is a neuronal calcium sensor protein previously implicated in regulating neuronal viability and plasticity. Hippocalcin is the most highly expressed neuronal calcium sensor in the medium spiny striatal output neurons that degenerate selectively in Huntington's disease (HD). We have previously shown that decreased hippocalcin expression occurs in parallel with the onset of disease phenotype in mouse models of HD. Here we show by in situ hybridization histochemistry that hippocalcin RNA is also diminished by 63% in human HD brain. These findings lead us to hypothesize that diminished hippocalcin expression might contribute to striatal neurodegeneration in HD. We tested this hypothesis by assessing whether restoration of hippocalcin expression would decrease striatal neurodegeneration in cellular models of HD comprising primary striatal neurons exposed to mutant huntingtin, the mitochondrial toxin 3-nitropropionic acid or an excitotoxic concentration of glutamate. Counter to our hypothesis, hippocalcin expression did not improve the survival of striatal neurons under these conditions. Likewise, expression of hippocalcin together with interactor proteins including the neuronal apoptosis inhibitory protein did not increase the survival of striatal cells in cellular models of HD. These results indicate that diminished hippocalcin expression does not contribute to HD-related neurodegeneration.

摘要

海马钙素是一种神经元钙传感器蛋白,先前被认为与调节神经元的活力和可塑性有关。海马钙素是中等棘状纹状体输出神经元中表达最高的神经元钙传感器,而这些神经元在亨廷顿舞蹈病(HD)中会选择性退化。我们之前已经表明,在HD小鼠模型中,海马钙素表达的降低与疾病表型的出现同时发生。在此,我们通过原位杂交组织化学显示,在人类HD大脑中,海马钙素RNA也减少了63%。这些发现使我们推测,海马钙素表达的减少可能导致HD中的纹状体神经变性。我们通过评估恢复海马钙素表达是否会减少HD细胞模型中的纹状体神经变性来检验这一假设,这些细胞模型包括暴露于突变型亨廷顿蛋白、线粒体毒素3-硝基丙酸或兴奋性毒性浓度谷氨酸的原代纹状体神经元。与我们的假设相反,在这些条件下,海马钙素表达并未改善纹状体神经元的存活。同样,在HD细胞模型中,海马钙素与包括神经元凋亡抑制蛋白在内的相互作用蛋白一起表达,也未增加纹状体细胞的存活。这些结果表明,海马钙素表达的减少与HD相关的神经变性无关。

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