首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Targeted disruption of the murine Na+/H+ exchanger isoform 2 gene causes reduced viability of gastric parietal cells and loss of net acid secretion.
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Targeted disruption of the murine Na+/H+ exchanger isoform 2 gene causes reduced viability of gastric parietal cells and loss of net acid secretion.

机译:靶向破坏鼠Na + / H +交换异构体2基因会导致胃壁细胞活力降低和净酸分泌减少。

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摘要

Multiple isoforms of the Na+/H+ exchanger (NHE) are expressed at high levels in gastric epithelium, but the physiological role of individual isoforms is unclear. To study the function of NHE2, which is expressed in mucous, zymogenic, and parietal cells, we prepared mice with a null mutation in the NHE2 gene. Homozygous null mutants exhibit no overt disease phenotype, but the cellular composition of the oxyntic mucosa of the gastric corpus is altered, with parietal and zymogenic cells reduced markedly in number. Net acid secretion in null mutants is reduced slightly relative to wild-type levels just before weaning and is abolished in adult animals. Although mature parietal cells are observed, and appear morphologically to be engaged in active acid secretion, many of the parietal cells are in various stages of degeneration. These results indicate that NHE2 is not required for acid secretion by the parietal cell, but is essential for its long-term viability. This suggests that the unique sensitivity of NHE2 to inhibition by extracellular H+, which would allow upregulation of its activity by the increased interstitial alkalinity that accompanies acid secretion, might enable this isoform to play a specialized role in maintaining the long-term viability of the parietal cell.
机译:Na + / H +交换子(NHE)的多种同工型在胃上皮细胞中高水平表达,但单个同工型的生理作用尚不清楚。为了研究在黏液,生酶和壁细胞中表达的NHE2的功能,我们制备了NHE2基因无效突变的小鼠。纯合的无效突变体不显示明显的疾病表型,但是胃体氧化性粘膜的细胞组成发生了改变,壁细胞和产酶细胞的数量明显减少。与刚断奶前的野生型水平相比,无效突变体中的净酸分泌略有减少,并且在成年动物中被废除了。尽管观察到成熟的壁细胞,并且在形态上似乎参与了活性酸的分泌,但是许多壁细胞处于退化的各个阶段。这些结果表明,NHE2不是壁细胞分泌酸所必需的,但对其长期生存能力却至关重要。这表明NHE2对细胞外H +抑制具有独特的敏感性,这将通过酸分泌增加的间隙碱性来上调NHE2的活性,这可能使这种亚型在维持顶叶的长期生存能力方面发挥特殊作用。细胞。

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