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钠-葡萄糖协同转运蛋白SGLT1和SGLT2在人肾脏中的定位以及SGLT1在人小肠、肝脏、肺和心脏中的定位。

Localizations of Na(+)-D-glucose cotransporters SGLT1 and SGLT2 in human kidney and of SGLT1 in human small intestine, liver, lung, and heart.

作者信息

Vrhovac Ivana, Balen Eror Daniela, Klessen Dirk, Burger Christa, Breljak Davorka, Kraus Ognjen, Radović Nikola, Jadrijević Stipe, Aleksic Ivan, Walles Thorsten, Sauvant Christoph, Sabolić Ivan, Koepsell Hermann

机构信息

Molecular Toxicology Unit, Institute for Medical Research and Occupational Health, Ksaverska cesta 2, 10000, Zagreb, Croatia.

出版信息

Pflugers Arch. 2015 Sep;467(9):1881-98. doi: 10.1007/s00424-014-1619-7. Epub 2014 Oct 11.

Abstract

Novel affinity-purified antibodies against human SGLT1 (hSGLT1) and SGLT2 (hSGLT2) were used to localize hSGLT2 in human kidney and hSGLT1 in human kidney, small intestine, liver, lung, and heart. The renal locations of both transporters largely resembled those in rats and mice; hSGLT2 and SGLT1 were localized to the brush border membrane (BBM) of proximal tubule S1/S2 and S3 segments, respectively. Different to rodents, the renal expression of hSGLT1 was absent in thick ascending limb of Henle (TALH) and macula densa, and the expression of both hSGLTs was sex-independent. In small intestinal enterocytes, hSGLT1 was localized to the BBM and subapical vesicles. Performing double labeling with glucagon-like peptide 1 (GLP-1) or glucose-dependent insulinotropic peptide (GIP), hSGLT1 was localized to GLP-1-secreting L cells and GIP-secreting K cells as has been shown in mice. In liver, hSGLT1 was localized to biliary duct cells as has been shown in rats. In lung, hSGLT1 was localized to alveolar epithelial type 2 cells and to bronchiolar Clara cells. Expression of hSGLT1 in Clara cells was verified by double labeling with the Clara cell secretory protein CC10. Double labeling of human heart with aquaporin 1 immunolocalized the hSGLT1 protein in heart capillaries rather than in previously assumed myocyte sarcolemma. The newly identified locations of hSGLT1 implicate several extra renal functions of this transporter, such as fluid absorption in the lung, energy supply to Clara cells, regulation of enteroendocrine cells secretion, and release of glucose from heart capillaries. These functions may be blocked by reversible SGLT1 inhibitors which are under development.

摘要

新型亲和纯化的抗人钠-葡萄糖协同转运蛋白1(hSGLT1)和钠-葡萄糖协同转运蛋白2(hSGLT2)抗体被用于在人肾脏中定位hSGLT2,以及在人肾脏、小肠、肝脏、肺和心脏中定位hSGLT1。这两种转运蛋白在肾脏中的定位与大鼠和小鼠中的情况大致相似;hSGLT2和SGLT1分别定位于近端小管S1/S2和S3节段的刷状缘膜(BBM)。与啮齿动物不同,hSGLT1在亨利氏袢升支粗段(TALH)和致密斑中无肾脏表达,且两种hSGLT的表达均与性别无关。在小肠肠上皮细胞中,hSGLT1定位于BBM和顶端下小泡。用胰高血糖素样肽1(GLP-1)或葡萄糖依赖性促胰岛素多肽(GIP)进行双重标记时,hSGLT1定位于分泌GLP-1的L细胞和分泌GIP的K细胞,正如在小鼠中所显示的那样。在肝脏中,hSGLT1定位于胆小管细胞,正如在大鼠中所显示的那样。在肺中,hSGLT1定位于肺泡Ⅱ型上皮细胞和细支气管克拉拉细胞。用克拉拉细胞分泌蛋白CC10进行双重标记验证了hSGLT1在克拉拉细胞中的表达。用人水通道蛋白1对人心脏进行双重标记将hSGLT1蛋白定位在心脏毛细血管中,而非先前认为的心肌肌膜中。hSGLT1新确定的定位表明该转运蛋白具有多种肾外功能,如肺中的液体吸收、为克拉拉细胞提供能量、调节肠内分泌细胞分泌以及从心脏毛细血管释放葡萄糖。这些功能可能会被正在研发的可逆性SGLT1抑制剂阻断。

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