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首页> 外文期刊>Life sciences >Identification of SLC26A transporters involved in the Cl -/HCO3 - exchange in proximal tubular cells from WKY and SHR
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Identification of SLC26A transporters involved in the Cl -/HCO3 - exchange in proximal tubular cells from WKY and SHR

机译:鉴定参与WKY和SHR近端肾小管细胞Cl-/ HCO3交换的SLC26A转运蛋白

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AbstractAims slc26a proteins are responsible for a large number of functions either in normal physiology or in human disease. We have previously reported that proximal tubular epithelial (PTE) cells immortalized from spontaneously hypertensive rats (SHRs) were endowed with increased Cl -/HCO3 - exchanger activity and slc26a6 protein expression compared with PTE cells immortalized from normotensive Wistar Kyoto (WKY) rats. The aim of the present study was to identify slc26a members responsible for the Cl-/HCO3 - exchange in WKY and SHR PTE cells. Main methods Cl-/HCO3 - exchanger activity was assessed as the initial rate of pHi recovery after removal of HCO3 - or after removal of Cl-. The presence of slc26a genes was evaluated by means of reverse transcriptase-PCR (RT-PCR) in WKY and SHR PTE cell lines and in the kidney of WKY and SHR. Transcript abundance was measured by quantitative real-time polymerase chain reaction (PCR). Key findings We detected slc26a4, slc26a6, slc26a7 and slc26a9 transcripts in the rat kidney of WKY and SHR. In WKY and SHR PTE cell lines we detected slc26a4, slc26a6 and slc26a9 transcripts, which were, respectively, 12-, 4- and 15-fold upregulated in SHR cells. Gene silencing with small interfering RNAs (siRNAs) targeting slc26a4, slc26a6 and slc26a9 reduced Cl-/HCO3 - exchanger activity in both cell lines. Significance These results indicate that Cl-/HCO 3 - exchanger activity is mediated by, at least in part, slc26a4, slc26a6 and slc26a9 in cultured WKY and SHR cells. The overexpression of these slc26a members in SHR cells may correspond to an adaptive process to cope with the sustained increase in proximal tubular sodium reabsorption.
机译:摘要目的slc26a蛋白负责正常生理或人类疾病中的大量功能。我们以前曾报道过,与正常血压Wistar京都(WKY)大鼠永生的PTE细胞相比,自发性高血压大鼠(SHRs)永生的近端肾小管上皮(PTE)细胞具有更高的Cl-/ HCO3-交换子活性和slc26a6蛋白表达。本研究的目的是确定负责WKY和SHR PTE细胞中Cl- / HCO3-交换的slc26a成员。主要方法Cl- / HCO3-交换剂活性以去除HCO3-后或去除Cl-后pHi回收的初始速率进行评估。通过逆转录酶-PCR(RT-PCR)在WKY和SHR PTE细胞系以及WKY和SHR肾脏中评估slc26a基因的存在。通过定量实时聚合酶链反应(PCR)测量转录本丰度。关键发现我们在WKY和SHR大鼠肾脏中检测到slc26a4,slc26a6,slc26a7和slc26a9转录本。在WKY和SHR PTE细胞系中,我们检测到slc26a4,slc26a6和slc26a9转录本,它们在SHR细胞中分别上调了12倍,4倍和15倍。用靶向slc26a4,slc26a6和slc26a9的小干扰RNA(siRNA)进行基因沉默可降低两种细胞系中的Cl- / HCO3-交换子活性。意义这些结果表明,在培养的WKY和SHR细胞中,Cl- / HCO 3-交换子活性至少部分地由slc26a4,slc26a6和slc26a9介导。这些Slc26a成员在SHR细胞中的过表达可能对应于适应性过程,以应对近端肾小管钠吸收的持续增加。

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