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The Sodium/Iodide Symporter (NIS): Molecular Physiology and Preclinical and Clinical Applications
Annual Review of Physiology ( IF 18.2 ) Pub Date : 2017-02-13 00:00:00 , DOI: 10.1146/annurev-physiol-022516-034125
Silvia Ravera 1 , Andrea Reyna-Neyra 1 , Giuseppe Ferrandino 1 , L. Mario Amzel 2 , Nancy Carrasco 1
Affiliation  

Active iodide (I) transport in both the thyroid and some extrathyroidal tissues is mediated by the Na+/I symporter (NIS). In the thyroid, NIS-mediated I uptake plays a pivotal role in thyroid hormone (TH) biosynthesis. THs are key during embryonic and postembryonic development and critical for cell metabolism at all stages of life. The molecular characterization of NIS in 1996 and the use of radioactive I isotopes have led to significant advances in the diagnosis and treatment of thyroid cancer and provide the molecular basis for studies aimed at extending the use of radioiodide treatment in extrathyroidal malignancies. This review focuses on the most recent findings on I homeostasis and I transport deficiency-causing NIS mutations, as well as current knowledge of the structure/function properties of NIS and NIS regulatory mechanisms. We also discuss employing NIS as a reporter gene using viral vectors and stem cells in imaging, diagnostic, and therapeutic procedures.

中文翻译:


钠/碘化物转运体(NIS):分子生理学以及临床前和临床应用

活性碘化物(I - )在甲状腺和一些甲状腺外组织两个传输是由介导的Na + / I -同向转运体(NIS)。在甲状腺,NIS介导的我-的吸收起着甲状腺激素(TH)的生物合成中起关键作用。THs在胚胎和胚后发育过程中至关重要,对于生命的各个阶段的细胞代谢都至关重要。NIS 1996年的分子特性和使用放射性我的-同位素导致了诊断和治疗甲状腺癌的显著进展,并为旨在扩大在甲状腺外的恶性肿瘤使用放射性碘治疗研究的分子基础。这篇评论着重于关于I的最新发现-稳态和我-转运缺陷,导致NIS突变,以及对NIS和NIS监管机制的结构/功能特性的现有知识。我们还将讨论在成像,诊断和治疗程序中使用病毒载体和干细胞将NIS作为报告基因。

更新日期:2017-02-13
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