Mun Ga Hee, Kim Myeung Ju, Lee Ju Hyun, Kim Hyun Jun, Chung Yoon Hee, Chung Young Bae, Kang Jae Seung, Hwang Young Il, Oh Seung Ha, Kim Joong-Gon, Hwang Douk Ho, Shin Dong Hoon, Lee Wang Jae
Department of Anatomy, Seoul National University College of Medicine, Seoul, Korea.
J Neurosci Res. 2006 Apr;83(5):919-28. doi: 10.1002/jnr.20751.
Sodium-dependent vitamin C transporters (SVCTs) is known to transport the reduced form of ascorbic acid into the cell, whereas the oxidized form of vitamin C (VC) is moved through a facilitative sugar transporter, such as glucose transporter (GLUT). With regard to the distribution of SVCT1 and -2 within the various organs, they were reported to be expressed in different types of cells. Especially in the central nervous system, only SVCT2 mRNA was expressed mainly in neurons and some types of neuroglial cells. However, data on the expression of SVCT proteins in the brain are scant. Therefore, we tried to develop comprehensive data on the distribution of SVCT proteins in adult rat brain by using immunohistochemical techniques for the first time. In our study, SVCT2 immunoreactivities (IRs) were intensely localized in the neurons of cerebral cortex, hippocampus, and Purkinje cells of cerebellum, and much weaker SVCT2 IRs were found in the other brain regions. Judging from double-immunohistochemical data, most of the cells expressing SVCT2 IRs were likely to be neurons or microglia, even though the cells in choroids plexus or ependymal cells around the ventricles also exhibited SVCT2 IRs. Complete mapping of the distribution of SVCT2 IRs was available by using a semiquantitative method. The subcellular localization of SVCT proteins is necessary for understanding the exact role of the protein, so the current overall mapping of SVCT IRs in the rat brain could be the basis for further studies on related subjects.
钠依赖性维生素C转运体(SVCTs)已知可将还原型抗坏血酸转运到细胞内,而维生素C(VC)的氧化形式则通过易化性糖转运体,如葡萄糖转运体(GLUT)进行转运。关于SVCT1和-2在各器官中的分布,据报道它们在不同类型的细胞中表达。特别是在中枢神经系统中,只有SVCT2 mRNA主要在神经元和某些类型的神经胶质细胞中表达。然而,关于SVCT蛋白在脑中表达的数据却很少。因此,我们首次尝试通过免疫组织化学技术来建立成年大鼠脑中SVCT蛋白分布的全面数据。在我们的研究中,SVCT2免疫反应性(IRs)强烈定位于大脑皮层、海马体的神经元以及小脑的浦肯野细胞中,而在其他脑区发现的SVCT2 IRs则弱得多。从双重免疫组织化学数据判断,大多数表达SVCT2 IRs的细胞可能是神经元或小胶质细胞,尽管脉络丛中的细胞或脑室周围的室管膜细胞也表现出SVCT2 IRs。通过使用半定量方法可以获得SVCT2 IRs分布的完整图谱。SVCT蛋白的亚细胞定位对于理解该蛋白的确切作用是必要的,因此目前大鼠脑中SVCT IRs的整体图谱可为相关主题的进一步研究奠定基础。