首页> 美国卫生研究院文献>Acta Histochemica et Cytochemica >Characterization of a Novel Monoclonal Antibody against Human Mitochondrial Ferritin and Its Immunohistochemical Application in Human and Monkey Substantia Nigra
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Characterization of a Novel Monoclonal Antibody against Human Mitochondrial Ferritin and Its Immunohistochemical Application in Human and Monkey Substantia Nigra

机译:新型抗人线粒体铁蛋白单克隆抗体的表征及其在人和猴黑质中的免疫组织化学应用

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摘要

Mitochondrial ferritin (FtMt) is a novel iron storage protein with high homology to H-ferritin. Unlike the ubiquitously expressed H- and L-ferritin, FtMt is expressed in specific tissues such as the testis, heart, and brain. The function of FtMt is not fully understood; however, evidence suggests that it has a neuroprotective role in neurodegenerative diseases. We have previously reported that FtMt is expressed in catecholaminergic neurons of the monkey brainstem. To explore FtMt expression in human dopaminergic neurons, we designed a novel monoclonal antibody, C65-2, directed against human FtMt. Here, we report the properties of our C65-2 antibody. Western blots analysis and immunoabsorption tests demonstrated that the C65-2 antibody specifically recognized FtMt with no cross-reactivity to H-ferritin. Immunohistochemistry showed that the C65-2 antibody detected FtMt in neurons of the substantia nigra pars compacta (SNc) in humans and monkeys. We confirmed that FtMt is expressed in dopaminergic neurons of the human SNc. Our results suggest that FtMt is involved in various physiological and pathological mechanisms in human dopaminergic neurons, and the C65-2 monoclonal antibody promises to be a useful tool for determining the localization and biological functions of FtMt in the brain.
机译:线粒体铁蛋白(FtMt)是一种与H-铁蛋白高度同源的新型铁存储蛋白。与普遍表达的H和L铁蛋白不同,FtMt在特定组织(例如睾丸,心脏和大脑)中表达。 FtMt的功能尚不完全清楚。然而,证据表明它在神经退行性疾病中具有神经保护作用。先前我们已经报道过FtMt在猴脑干的儿茶酚胺能神经元中表达。为了探索人多巴胺能神经元中FtMt的表达,我们设计了针对人FtMt的新型单克隆抗体C65-2。在这里,我们报告我们的C65-2抗体的特性。 Western印迹分析和免疫吸收测试表明,C65-2抗体特异性识别FtMt,与H-铁蛋白无交叉反应。免疫组织化学表明,C65-2抗体在人和猴的黑质致密部(SNc)神经元中检测到FtMt。我们证实FtMt在人类SNc的多巴胺能神经元中表达。我们的结果表明,FtMt参与了人类多巴胺能神经元的各种生理和病理学机制,而C65-2单克隆抗体有望成为确定FtMt在大脑中的定位和生物学功能的有用工具。

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