首页> 美国卫生研究院文献>American Journal of Physiology - Renal Physiology >Expression of sodium-dependent dicarboxylate transporter 1 (NaDC1/SLC13A2) in normal and neoplastic human kidney
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Expression of sodium-dependent dicarboxylate transporter 1 (NaDC1/SLC13A2) in normal and neoplastic human kidney

机译:钠依赖性二羧酸转运蛋白1(NaDC1 / SLC13A2)在正常和赘生性人肾脏中的表达

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摘要

Regulated dicarboxylate transport is critical for acid-base homeostasis, prevention of calcium nephrolithiasis, regulation of collecting duct sodium chloride transport, and the regulation of blood pressure. Although luminal dicarboxylate reabsorption via NaDC1 (SLC13A2) is believed to be the primary mechanism regulating renal dicarboxylate transport, the specific localization of NaDC1 in the human kidney is currently unknown. This study’s purpose was to determine NaDC1's expression in normal and neoplastic human kidneys. Immunoblot analysis demonstrated NaDC1 expression with an apparent molecular weight of ~61 kDa. Immunohistochemistry showed apical NaDC1 immunolabel in the proximal tubule of normal human kidney tissue; well-preserved proximal tubule brush border was clearly labeled. Apical NaDC1 expression was evident throughout the entire proximal tubule, including the initial proximal convoluted tubule, as identified by origination from the glomerular tuft, and extending through the terminal of the proximal tubule, the proximal straight tubule in the outer medulla. We confirmed proximal tubule localization by colocalization with the proximal tubule specific protein, NBCe1. NaDC1 immunolabel was not detected other than in the proximal tubule. In addition, NaDC1 immunolabel was not detected in tumors of presumed proximal tubule origin, clear cell and papillary renal cell carcinoma, or in tumors of nonproximal tubule origin, oncocytoma and chromophobe carcinoma. In summary, 1) in the human kidney, apical NaDC1 immunolabel is present throughout the entire proximal tubule, and is not detectable in other renal cells; and 2) NaDC1 immunolabel is not present in renal tumors. These studies provide important information regarding NaDC1’s role in human dicarboxylate metabolism.
机译:调节的二羧酸盐运输对于酸碱稳态,预防肾结石病,调节收集导管氯化钠运输和调节血压至关重要。尽管人们认为通过NaDC1(SLC13A2)重吸收二羧酸腔盐是调节肾脏二羧酸盐转运的主要机制,但目前尚不清楚NaDC1在人肾脏中的特异性定位。这项研究的目的是确定NaDC1在正常和肿瘤性人类肾脏中的表达。免疫印迹分析表明NaDC1表达的表观分子量约为61 kDa。免疫组化显示正常人肾组织的近端小管中有根尖的NaDC1免疫标记。保留了保存完好的近端小管刷缘。根尖的NaDC1表达在整个近端小管中都很明显,包括最初的近端曲折小管,这是通过从肾小球毛簇起源而确定的,并延伸通过近端小管的末端,即外延髓中的近端直小管。我们通过与近端小管特异性蛋白NBCe1共定位来确认近端小管的定位。除了近端小管外,未检测到NaDC1免疫标记。此外,在推测的近端肾小管起源的肿瘤,透明细胞和乳头状肾细胞癌或非近端肾小管起源的肿瘤,肿瘤细胞瘤和发色瘤中未检测到NaDC1免疫标记。总之,1)在人肾脏中,根尖NaDC1免疫标记物存在于整个近端小管中,在其他肾细胞中无法检测到; 2)肾肿瘤中不存在NaDC1免疫标签。这些研究提供了有关NaDC1在人类二羧酸酯代谢中的作用的重要信息。

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