首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Pronephric regulation of acid-base balance; coexpression of carbonic anhydrase type 2 and sodium-bicarbonate cotransporter-1 in the late distal segment.
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Pronephric regulation of acid-base balance; coexpression of carbonic anhydrase type 2 and sodium-bicarbonate cotransporter-1 in the late distal segment.

机译:酸碱平衡的前肾调节;在远端末段共表达2型碳酸酐酶和碳酸氢钠cotransporter-1。

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摘要

The kidney plays a critical role in regulating the composition of the blood, including pH. The major buffer regulating pH of the blood is bicarbonate. Bicarbonate is freely filtered through the glomerulus and must be recovered from the primary filtrate to maintain appropriate buffering capacity and blood pH. In this report, the expression of carbonic anhydrase type 2 within the late distal segment of pronephroi is described. This expression precisely overlaps that of the sodium-bicarbonate transporter XNBC1. In mammalian kidneys, these two proteins collaborate in the transepithelial recovery of bicarbonate from the kidney filtrate. Coexpression of the genes encoding these proteins in Xenopus embryos indicates that pronephroi use the same recovery system and that this system is largely localized to the late portion of the pronephric distal segment. Not only do the simple pronephroi regulate water and solute balance, they also appear to regulate blood pH in a manner akin to that of the vastly more complex mammalian metanephric kidneys.
机译:肾脏在调节血液成分(包括pH值)中起关键作用。调节血液pH的主要缓冲剂是碳酸氢盐。碳酸氢盐通过肾小球自由过滤,必须从一级滤液中回收以保持适当的缓冲能力和血液pH值。在该报告中,描述了前肾盂远端末段内2型碳酸酐酶的表达。该表达恰好与碳酸氢钠转运蛋白XNBC1的表达重叠。在哺乳动物的肾脏中,这两种蛋白质协同作用从肾脏滤液中经碳酸氢盐经上皮回收。在非洲爪蟾胚胎中编码这些蛋白的基因的共表达表明,肾前肾使用相同的恢复系统,并且该系统主要定位于肾前远端节段的后期。简单的前肾不仅可以调节水和溶质的平衡,而且还可以调节血液pH值,其方式类似于极为复杂的哺乳动物后肾。

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