Marumo R, Kaizuma S, Nogae S, Kanazawa M, Kimura T, Saito T, Ito S, Matsubara M
The Second Department of Internal Medicine, Tohoku University School of Medicine, Sendai, Japan.
Kidney Int. 1998 Sep;54(3):877-88. doi: 10.1046/j.1523-1755.1998.00051.x.
Na-Cl cotransport across the apical membrane of epithelial cells in the thick ascending limb of the loop of Henle (TAL) plays a major role in salt accumulation for hypertonic medullary interstitium. The electroneutral, rat bumetanide-sensitive sodium transporter, rBSC1, is involved in this process. We studied the level of rBSC1 mRNA in dehydration and cardiac failure, since sodium transport in TAL may be enhanced in both conditions in spite of the difference in extracellular fluid accumulation.
Male Sprague-Dawley rats were deprived of water for 24 hours and myocardial infarction of about 40% of left ventricular circumference was induced in another group of rats that later developed congestive heart failure (CHF). Digoxigenin-labeled cRNA probe for rBSC1 was constructed using polymerase chain reaction (PCR), and Northern blot analysis was performed using RNAs from renal outer medulla. By inducing a point mutation at the middle of PCR product, we compared the amount of rBSC1 transcripts in the renal cortex using competitive PCR, since TAL represents a small fraction of the total cortical tissue.
Northern analysis showed a significant increase in rBSC1 mRNA in the renal outer medulla of both dehydrated and CHF rats. In the renal cortex, however, the increase was noted only in CHF by competitive PCR. In situ hybridization using the riboprobe for northern analysis demonstrated that the transcript signal in dehydrated rats was intensified segmentally in TAL located in the inner stripe of outer medulla. Western analysis and immunohistochemistry using a specific antibody against rBSC1 confirmed the distinct segmental enhancement of apical protein expression in dehydration and diffuse enhanced expression in CHF.
rBSC1 is differentially upregulated in different pathological conditions.
在髓袢升支粗段(TAL)上皮细胞顶端膜上的钠 - 氯共转运在高渗髓质间质的盐积累中起主要作用。电中性的、对大鼠布美他尼敏感的钠转运体rBSC1参与了这一过程。我们研究了脱水和心力衰竭时rBSC1 mRNA的水平,因为尽管细胞外液蓄积情况不同,但在这两种情况下TAL中的钠转运可能都会增强。
将雄性Sprague-Dawley大鼠禁水24小时,并在另一组大鼠中诱导约40%左心室周长的心肌梗死,这些大鼠随后发展为充血性心力衰竭(CHF)。使用聚合酶链反应(PCR)构建地高辛标记的rBSC1 cRNA探针,并使用肾外髓质的RNA进行Northern印迹分析。通过在PCR产物中间诱导一个点突变,我们使用竞争性PCR比较了肾皮质中rBSC1转录本的量,因为TAL仅占整个皮质组织的一小部分。
Northern分析显示脱水和CHF大鼠肾外髓质中rBSC1 mRNA显著增加。然而,在肾皮质中,仅通过竞争性PCR在CHF大鼠中观察到增加。使用用于Northern分析的核糖探针进行原位杂交表明,脱水大鼠中的转录本信号在外髓内带的TAL中呈节段性增强。使用针对rBSC1的特异性抗体进行的Western分析和免疫组织化学证实了脱水时顶端蛋白表达的明显节段性增强以及CHF时的弥漫性增强表达。
rBSC1在不同病理条件下差异上调。