Pinho Maria João, Serrão Maria Paula, José Pedro A, Soares-da-Silva Patrício
Faculty of Medicine, Institute of Pharmacology and Therapeutics, 4200 Porto, Portugal.
Mol Cell Biochem. 2007 Dec;306(1-2):9-18. doi: 10.1007/s11010-007-9548-9. Epub 2007 Jul 24.
The present study examines the renal and intestinal expression of Na(+)-dependent amino acid transporter B(0)AT1 during the development of hypertension in the spontaneous hypertensive rats (SHR) and its normotensive control (Wistar-Kyoto rat; WKY), and evaluates whether the expression of renal B(0)AT1 correlates with changes in the expression of Na(+) transporters, type 3 Na(+)/H(+) exchanger (NHE3) and Na(+)-K(+)-ATPase, known to occur in the SHR. The effect of high salt (HS) intake on the expression of renal and intestinal B(0)AT1 transcript abundance was also evaluated. For this purpose, the cloning of rat homolog of B(0)AT1 was performed. Rat B(0)AT1 shows high sequence homology to the mouse ortholog. Renal B(0)AT1 transcript abundance was lower in SHR than WKY at both 4 and 12 weeks of age. No significant differences between strains were observed in terms of intestinal expression of B(0)AT1. The decreased B(0)AT1 expression in SHR kidney was accompanied with an increase in NHE3 expression, suggesting an impaired Na(+) uptake. HS intake decreased renal B(0)AT1 mRNA in SHR and WKY at 4 weeks of age. In 12-week-old SHR, HS intake increased renal B(0)AT1 transcript abundance. Intestinal B(0)AT1 transcript was significantly increased by HS intake, though the effect was considerably more pronounced in the SHR. It is concluded, that underexpression of B(0)AT1 in the SHR kidney is organ specific, precedes the onset of hypertension and correlates negatively with the renal tubular transport of Na(+). The regulation of B(0)AT1 gene transcription appears to be under the influence of Na(+) delivery, being organ specific.
本研究检测了自发性高血压大鼠(SHR)及其正常血压对照(Wistar-Kyoto大鼠;WKY)高血压发展过程中肾和肠道中钠依赖性氨基酸转运体B(0)AT1的表达,并评估肾B(0)AT1的表达是否与已知在SHR中发生变化的钠转运体、3型钠/氢交换体(NHE3)和钠钾ATP酶的表达变化相关。还评估了高盐(HS)摄入对肾和肠道B(0)AT1转录本丰度表达的影响。为此,进行了大鼠B(0)AT1同源物的克隆。大鼠B(0)AT1与小鼠直系同源物具有高度序列同源性。在4周龄和12周龄时,SHR肾B(0)AT1转录本丰度均低于WKY。在B(0)AT1的肠道表达方面,未观察到品系间的显著差异。SHR肾中B(0)AT1表达降低伴随着NHE3表达增加,提示钠摄取受损。4周龄时,HS摄入降低了SHR和WKY的肾B(0)AT1 mRNA。在12周龄的SHR中,HS摄入增加了肾B(0)AT1转录本丰度。HS摄入显著增加了肠道B(0)AT1转录本,尽管在SHR中这种作用更为明显。得出的结论是,SHR肾中B(0)AT1表达不足具有器官特异性,先于高血压发作,且与肾小管钠转运呈负相关。B(0)AT1基因转录的调节似乎受钠递送的影响,具有器官特异性。