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首页> 外文期刊>American Journal of Physiology >The Na+/I- symporter mediates active iodide uptake in the intestine.
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The Na+/I- symporter mediates active iodide uptake in the intestine.

机译:Na + / I-转运蛋白介导肠道中碘的吸收。

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摘要

Absorption of dietary iodide, presumably in the small intestine, is the first step in iodide (I(-)) utilization. From the bloodstream, I(-) is actively taken up via the Na(+)/I(-) symporter (NIS) in the thyroid for thyroid hormone biosynthesis and in such other tissues as lactating breast, which supplies I(-) to the newborn in the milk. The molecular basis for intestinal I(-) absorption is unknown. We sought to determine whether I(-) is actively accumulated by enterocytes and, if so, whether this process is mediated by NIS and regulated by I(-) itself. NIS expression was localized exclusively at the apical surface of rat and mouse enterocytes. In vivo intestine-to-blood transport of pertechnetate, a NIS substrate, was sensitive to the NIS inhibitor perchlorate. Brush border membrane vesicles accumulated I(-) in a sodium-dependent, perchlorate-sensitive manner with kinetic parameters similar to those of thyroid cells. NIS was expressed in intestinal epithelial cell line 6, and I(-) uptake in these cells was also kinetically similar to that in thyrocytes. I(-) downregulated NIS protein expression and its own NIS-mediated transport both in vitro and in vivo. We conclude that NIS is functionally expressed on the apical surface of enterocytes, where it mediates active I(-) accumulation. Therefore, NIS is a significant and possibly central component of the I(-) absorption system in the small intestine, a system of key importance for thyroid hormone biosynthesis and thus systemic intermediary metabolism.
机译:饮食中碘的吸收(大概是在小肠中)是碘(I(-))利用的第一步。 I(-)从血流中通过Na(+)/ I(-)转运体(NIS)在甲状腺中活跃地吸收,用于甲状腺激素的生物合成以及在其他哺乳期组织中为I(-)提供营养。牛奶中的新生儿。肠道I(-)吸收的分子基础是未知的。我们试图确定I(-)是否由肠细胞主动积聚,如果是,则此过程是否由NIS介导并受I(-)本身调节。 NIS表达仅定位于大鼠和小鼠肠上皮细胞的顶表面。高tech酸盐(一种NIS底物)在体内从肠道到血液的运输对NIS抑制剂高氯酸盐敏感。刷状缘膜囊泡以钠依赖性,高氯酸盐敏感的方式积累I(-),其动力学参数与甲状腺细胞相似。 NIS在肠上皮细胞株6中表达,并且这些细胞中I(-)的摄取在动力学上也与甲状腺细胞相似。我(-)下调了NIS蛋白表达及其在体外和体内的NIS介导的运输。我们得出结论,NIS在肠上皮细胞的顶表面上功能性表达,在那里它介导活跃的I(-)积累。因此,NIS是小肠I(-)吸收系统的重要组成部分,并且可能是其中的重要组成部分,这对甲状腺激素生物合成以及系统性中间代谢至关重要。

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