Department of Biochemistry and Molecular Biology, Rutgers Robert Wood Johnson Medical School, 675 Hoes Lane, Piscataway, NJ, 08854, USA.
Biol Trace Elem Res. 2018 Jan;181(1):54-61. doi: 10.1007/s12011-017-1044-9. Epub 2017 May 9.
Selenoprotein P (SELENOP) is a serum glycoprotein that is required for proper selenium distribution in mammals, particularly in supplying selenium to the brain and testes. As the sole mechanism for providing essential selenium to developing spermatozoa, SELENOP metabolism is central to male fertility in all mammals. In addition, this process is important for proper brain function, especially under conditions of limited dietary selenium. Several specific and nonspecific mechanisms for SELENOP uptake in target tissues have been described, but the utilization of SELENOP as a source of selenium for intracellular selenoprotein production has not been systematically characterized. In this report, we examine the process of SELENOP uptake using a robust selenium uptake assay that measures selenium utilization in cells fed Se-SELENOP. Using a series of inhibitors and modulators we have identified specific regulators of the process and found that SELENOP must be in an oxidized state for uptake. This assay also demonstrates that SELENOP uptake is not highly sequence specific as the zebrafish protein is recognized and processed by mammalian cells.
硒蛋白 P(SELENOP)是一种血清糖蛋白,它是哺乳动物中硒分布所必需的,特别是为大脑和睾丸提供硒。作为向发育中的精子提供必需硒的唯一机制,SELENOP 代谢对所有哺乳动物的雄性生育能力都至关重要。此外,这个过程对于大脑功能的正常运作很重要,特别是在饮食中硒含量有限的情况下。已经描述了几种针对靶组织中 SELENOP 摄取的特定和非特异性机制,但尚未系统地描述 SELENOP 作为细胞内硒蛋白产生的硒源的利用情况。在本报告中,我们使用一种强大的硒摄取测定法来研究 SELENOP 摄取的过程,该测定法可测量用 Se-SELENOP 喂养的细胞中硒的利用情况。通过一系列抑制剂和调节剂,我们确定了该过程的特定调节剂,并发现 SELENOP 必须处于氧化状态才能被摄取。该测定法还表明,SELENOP 摄取的序列特异性不高,因为哺乳动物细胞可以识别和处理斑马鱼蛋白。