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首页> 外文期刊>American Journal of Physiology >Vasopressin rapidly increases phosphorylation of UT-A1 urea transporter in rat IMCDs through PKA.
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Vasopressin rapidly increases phosphorylation of UT-A1 urea transporter in rat IMCDs through PKA.

机译:加压素通过PKA快速增加大鼠IMCD中UT-A1尿素转运蛋白的磷酸化。

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摘要

The UT-A1 urea transporter plays an important role in maintaining the hyperosmolar milieu of the inner medulla. Vasopressin increases urea permeability in rat terminal inner medullary collecting ducts (IMCDs) within 5-10 min. To elucidate the mechanism, IMCD suspensions were radiolabeled with [(32)P]orthophosphate. UT-A1 was immunoprecipitated and analyzed by autoradiogram and Western blot. Both the 97- and 117-kDa UT-A1 proteins were phosphorylated. Vasopressin treatment increased the phosphorylation of both UT-A1 proteins at 2 min, which peaked at 5-10 min and remained elevated for up to 30 min. There was a discernable increase in UT-A1 phosphorylation with 10 pM and a 50% increase with 10-100 nM vasopressin. 1-Desamino-8-D-arginine vasopressin (dDAVP) or 8-(4-chlorophenylthio)-cAMP (CPT-cAMP) also increased UT-A1 phosphorylation. The vasopressin-stimulated increase in UT-A1 phosphorylation was blocked by H-89 or a specific peptide inhibitor of protein kinase A. Phosphatase inhibitors (okadaic acid, calyculin) increased UT-A1 phosphorylation. We conclude that vasopressin increases UT-A1 phosphorylation via protein kinase A within 2-5 min in rat IMCDs. This suggests that phosphorylation of UT-A1 may be the mechanism by which vasopressin rapidly increases urea permeability in vivo.
机译:UT-A1尿素转运蛋白在维持内髓质的高渗环境中起着重要作用。加压素可在5-10分钟内增加大鼠末梢内髓收集管(IMCD)的尿素渗透性。为了阐明机理,将IMCD悬浮液用[(32)P]正磷酸盐进行放射性标记。免疫沉淀UT-A1并通过放射自显影和Western印迹进行分析。 97 kDa和117 kDa的UT-A1蛋白都被磷酸化了。加压素处理在2分钟时增加了两种UT-A1蛋白的磷酸化,在5-10分钟达到峰值,并在长达30分钟的时间内保持升高。 10 pM时UT-A1磷酸化明显增加,而10-100 nM加压素则增加50%。 1-Desamino-8-D-精氨酸加压素(dDAVP)或8-(4-氯苯硫基)-cAMP(CPT-cAMP)也增加了UT-A1磷酸化。血管加压素刺激的UT-A1磷酸化增加被H-89或蛋白激酶A的特定肽抑制剂所阻断。磷酸酶抑制剂(冈田酸,calyculin)增加了UT-A1磷酸化。我们得出结论,在大鼠IMCD中,加压素通过蛋白激酶A在2-5分钟内增加UT-A1磷酸化。这表明UT-A1的磷酸化可能是血管加压素迅速增加体内尿素渗透性的机制。

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