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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >The brain selenoproteome: priorities in the hierarchy and different levels of selenium homeostasis in the brain of selenium-deficient rats.
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The brain selenoproteome: priorities in the hierarchy and different levels of selenium homeostasis in the brain of selenium-deficient rats.

机译:脑硒蛋白组:缺硒大鼠大脑中硒稳态的不同层次和优先级。

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The application of radionuclides for the localization of essential trace elements in vivo and the characterization of their binding proteins is a story of intermittently made improvements of the techniques used for their detection. In this study we present the use of neutron activation analysis and different autoradiographic imaging methods including real-time digital autoradiography to reveal new insights in the hierarchy of selenium homeostasis. Selenoproteins containing the essential trace element selenium play important roles in the CNS. Although the CNS does not show the highest selenium concentration in the case of selenium-sufficient supply in comparison with other organs, it shows a high priority for selenium uptake and retention in the case of dietary selenium deficiency. To characterize the hierarchy of selenium supply in the brain, in vivo radiotracer labeling with (75)Se in rats with different selenium status was combined with autoradiographic detection of (75)Se in brain tissue sections and (75)Se-labeled selenoproteins after protein separation by two-dimensional gel electrophoresis. This study demonstrates significant differences in the uptake of (75)Se into the brain of rats with different selenium status. A brain region-specific uptake pattern of the radiotracer (75)Se in selenium-deficient rats could be revealed and the CSF was identified as a key part of the brain selenium homeostasis.
机译:放射性核素在体内定位必需微量元素及其结合蛋白的表征方面的应用是断断续续地改进了其检测技术的故事。在这项研究中,我们介绍了使用中子活化分析和不同的放射自显影成像方法(包括实时数字放射自显影)来揭示硒稳态的新见解。含有必需微量元素硒的硒蛋白在中枢神经系统中起重要作用。尽管与其他器官相比,中枢神经系统在硒供应充足的情况下并没有显示出最高的硒浓度,但在饮食中硒缺乏的情况下,它对硒的吸收和保留具有很高的优先级。为了表征大脑中硒的供应层次,将具有不同硒状态的大鼠体内的放射性示踪剂(75)Se标记与放射自显影检测脑组织切片中的(75)Se和蛋白质后(75)Se标记的硒蛋白结合起来二维凝胶电泳分离。这项研究表明,不同硒状态的大鼠大脑摄取(75)Se的差异很大。可以揭示缺硒大鼠中放射性示踪剂(75)Se的脑区域特异性摄取模式,并且脑脊液被确定为脑硒稳态的关键部分。

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