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首页> 外文期刊>American Journal of Physiology >Role of PKC and AMPK in hypertonicity-stimulated water reabsorption in rat inner medullary collecting ducts
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Role of PKC and AMPK in hypertonicity-stimulated water reabsorption in rat inner medullary collecting ducts

机译:Role of PKC and AMPK in hypertonicity-stimulated water reabsorption in rat inner medullary collecting ducts

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摘要

The PKC inhibitors chelerythrine (10 xM) and rottlerin (50 xM) significantly reversed the increase in osmotic water permeability stimulated by hypertonicity in perfused rat terminal IMCDs. Chelerythrine significantly increased phosphorylation of AQP2 at S261 but not at S256. Previous studies show that AMPK is stimulated by osmotic stress. We tested AMPK phosphorylation under hypertonic conditions. Hypertonicity significantly increased AMPK phosphorylation in inner medullary tissues. Blockade of AMPK with Compound C decreased hypertoiiicity-stimulated water permeability but did not alter phosphorylation of AQP2 at S256 and S261. A1CAR, an AMPK stimulator, caused a transient increase in osmotic water permeability and increased phosphorylation of AQP2 at S256. When inner medullary tissue was treated with the PKC activator phorbol dibutyrate (PDBu), the AMPK activator metformin, or both, AQP2 phosphorylation at S261 was decreased with PDBu or metformin alone, but there was no additive effect on phosphorylation with PDBu and metformin together. In conclusion, hypertonicity regulates water reabsorption by activating PKC. Hypertonicity-stimulated water reabsorption by PKC may be related to the decrease in endocytosis of AQP2. AMPK activation promotes water reabsorption, but the mechanism remains to be determined. PKC and AMPK do not appear to act synergistically to regulate water reabsorption.

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