Nicola Juan Pablo, Carrasco Nancy, Masini-Repiso Ana María
Departamento de Bioquímica Clínica, Facultad de Ciencias Químicas, Universidad Nacional de Córdoba, Córdoba, Argentina.
Department of Cellular and Molecular Physiology, Yale University School of Medicine, New Haven, Connecticut, USA.
Vitam Horm. 2015;98:1-31. doi: 10.1016/bs.vh.2014.12.002. Epub 2015 Feb 27.
Thyroid hormones are critical for the normal development, growth, and functional maturation of several tissues, including the central nervous system. Iodine is an essential constituent of the thyroid hormones, the only iodine-containing molecules in vertebrates. Dietary iodide (I(-)) absorption in the gastrointestinal tract is the first step in I(-) metabolism, as the diet is the only source of I(-) for land-dwelling vertebrates. The Na(+)/I(-) symporter (NIS), an integral plasma membrane glycoprotein located in the brush border of enterocytes, constitutes a central component of the I(-) absorption system in the small intestine. In this chapter, we review the most recent research on structure/function relations in NIS and the protein's I(-) transport mechanism and stoichiometry, with a special focus on the tissue distribution and hormonal regulation of NIS, as well as the role of NIS in mediating I(-) homeostasis. We further discuss recent findings concerning the autoregulatory effect of I(-) on I(-) metabolism in enterocytes: high intracellular I(-) concentrations in enterocytes decrease NIS-mediated uptake of I(-) through a complex array of posttranscriptional mechanisms, e.g., downregulation of NIS expression at the plasma membrane, increased NIS protein degradation, and reduction of NIS mRNA stability leading to decreased NIS mRNA levels. Since the molecular identification of NIS, great progress has been made not only in understanding the role of NIS in I(-) homeostasis but also in developing protocols for NIS-mediated imaging and treatment of various diseases.
甲状腺激素对于包括中枢神经系统在内的多个组织的正常发育、生长和功能成熟至关重要。碘是甲状腺激素的必需成分,是脊椎动物中唯一含碘的分子。胃肠道对膳食碘化物(I(-))的吸收是I(-)代谢的第一步,因为饮食是陆生脊椎动物I(-)的唯一来源。钠/碘同向转运体(NIS)是一种位于肠上皮细胞刷状缘的完整质膜糖蛋白,是小肠I(-)吸收系统的核心组成部分。在本章中,我们综述了关于NIS结构/功能关系、该蛋白的I(-)转运机制和化学计量的最新研究,特别关注NIS的组织分布和激素调节,以及NIS在介导I(-)稳态中的作用。我们还进一步讨论了关于I(-)对肠上皮细胞I(-)代谢的自动调节作用的最新发现:肠上皮细胞内高浓度的I(-)通过一系列复杂的转录后机制降低NIS介导的I(-)摄取,例如质膜上NIS表达的下调、NIS蛋白降解增加以及NIS mRNA稳定性降低导致NIS mRNA水平下降。自从NIS的分子鉴定以来,不仅在理解NIS在I(-)稳态中的作用方面取得了巨大进展,而且在开发用于NIS介导的各种疾病成像和治疗的方案方面也取得了很大进展。