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细胞外低渗通过增强培养的肾集合管细胞中的Na+内流来增加Na,K-ATP酶的细胞表面表达。

Extracellular hypotonicity increases Na,K-ATPase cell surface expression via enhanced Na+ influx in cultured renal collecting duct cells.

作者信息

Vinciguerra Manlio, Arnaudeau Serge, Mordasini David, Rousselot Martine, Bens Marcelle, Vandewalle Alain, Martin Pierre-Yves, Hasler Udo, Feraille Eric

机构信息

Service de Néphrologie, Fondation pour Recherches Médicales, Geneva, Switzerland.

出版信息

J Am Soc Nephrol. 2004 Oct;15(10):2537-47. doi: 10.1097/01.ASN.0000139931.81844.10.

Abstract

In the renal collecting duct (CD), the Na,K-ATPase, which provides the driving force for Na+ absorption, is under tight multifactorial control. Because CD cells are physiologically exposed to variations of interstitial and tubular fluid osmolarities, the effects of extracellular anisotonicity on Na,K-ATPase cell surface expression were studied. Results show that hypotonic conditions increased, whereas hypertonic conditions had no effect on Na,K-ATPase cell surface expression in confluent mpkCCDcl4 cells. Incubating cells with amphotericin B, which increases [Na+]i, under isotonic or anisotonic conditions, revealed that Na,K-ATPase recruitment to the cell surface was not directly related to variations of cell volume and osmolarity. The effects of amphotericin B and extracellular hypotonicity were not additive, and both were prevented by protein kinase A and proteasome inhibitors, suggesting a common mechanism of action. In line with this hypothesis, extracellular hypotonicity induced a sustained stimulation of the amiloride-sensitive short-circuit current, indicating increased Na+ influx through the apical epithelial Na+ channel. Moreover, inhibiting apical Na+ entry by amiloride, a blocker of epithelial Na+ channel, or incubating cells in Na+ -free medium prevented the cell surface recruitment of Na,K-ATPase in response to extracellular hypotonicity. Altogether, these findings strongly suggest that extracellular hypotonicity stimulates apical Na+ influx leading to increased [Na+]i, protein kinase A activation, and recruitment of Na,K-ATPase units to the cell surface of mpkCCDcl4 cells.

摘要

在肾集合管(CD)中,为Na⁺重吸收提供驱动力的钠钾ATP酶受到严格的多因素控制。由于集合管细胞在生理上会受到间质液和肾小管液渗透压变化的影响,因此研究了细胞外渗透压异常对钠钾ATP酶细胞表面表达的影响。结果表明,低渗条件下钠钾ATP酶细胞表面表达增加,而高渗条件对汇合的mpkCCDcl4细胞中钠钾ATP酶细胞表面表达没有影响。在等渗或渗透压异常条件下,用增加细胞内[Na⁺]的两性霉素B孵育细胞,结果显示钠钾ATP酶向细胞表面的募集与细胞体积和渗透压的变化没有直接关系。两性霉素B和细胞外低渗的作用不是相加的,并且两者都被蛋白激酶A和蛋白酶体抑制剂所阻断,这表明存在共同的作用机制。与此假设一致,细胞外低渗诱导了对氨氯地平敏感的短路电流的持续刺激,表明通过顶端上皮钠通道的Na⁺内流增加。此外,用上皮钠通道阻滞剂氨氯地平抑制顶端Na⁺内流,或在无Na⁺培养基中孵育细胞,可防止细胞表面因细胞外低渗而募集钠钾ATP酶。总之,这些发现强烈表明,细胞外低渗刺激顶端Na⁺内流,导致细胞内[Na⁺]增加、蛋白激酶A激活以及钠钾ATP酶单位募集到mpkCCDcl4细胞的细胞表面。

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