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首页> 外文期刊>Steroids: An International Journal >Protein kinase D2 regulates epithelial sodium channel activity and aldosterone non-genomic responses in renal cortical collecting duct cells
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Protein kinase D2 regulates epithelial sodium channel activity and aldosterone non-genomic responses in renal cortical collecting duct cells

机译:蛋白激酶D2调节上皮钠通道活性和醛固酮非基因组反应在肾皮质收集管细胞中

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Protein kinase D2 (PKD2) is a serine/threonine protein kinase which plays an important role in vesicle fission at the trans-Golgi network (TGN) to coordinate subcellular trafficking with gene expression. We found that in the rat kidney, PKD2 is specifically expressed in collecting duct principal cells predominantly at the apical membrane and with lower basal expression in cytosolic compartments. When rats were maintained on a Na+ depleted diet (<0.87 mmol Na+/kg) to increase plasma aldosterone levels, PKD2 became internalized to a cytoplasmic compartment. Treatment of murine M1 cortical collecting duct (M1-CCD) cells with aldosterone (10 nM) promoted PKD2 co-localization with the trans-Golgi network within 30 min. PKD2 underwent autophosphorylation at Ser876 within 10 min of aldosterone treatment and remained phosphorylated (active) for at least 24 h. A stable PKD2 shRNA knock-down (PKD2 KD) M1-CCD cell line was developed to study the role of PKD2 in epithelial Na+ channel (ENaC) trafficking and transepithelial Na+ transport (SCC) in epithelial monolayers grown in Ussing chambers. The PKD2 KD cells developed transepithelial resistance with kinetics equivalent to wild-type cells, however the transepithelial voltage and Na+ current were significantly elevated in PKD2 knock-down CCD epithelia. The higher basal SCC was due to increased ENaC activity. Aldosterone treatment for 24 h resulted in a decline in ENaC activity in the PKD2 KD cells as opposed to the increase observed in the wild-type cells. The paradoxical inhibition of SCC by aldosterone in PKD2 KD epithelium was attributed to a reduction in ENaC current and lower membrane abundance of ENaC, demonstrating that PKD2 plays a critical tonic role in ENaC trafficking and channel subunit stability. The rapid activation of PKD2 by aldosterone is synergistic with the transcriptional activity of MR and contributes to increased ENaC activity.
机译:蛋白激酶D2(PKD2)是一种丝氨酸/苏氨酸蛋白激酶,其在Trans-Golgi网络(TGN)的囊泡裂变中起重要作用,以协调基因表达的亚细胞流量。我们发现在大鼠肾脏中,PKD2特别地表达,主要在细胞内膜处收集管道主细胞,并在细胞溶质隔室中具有较低的基础表达。当大鼠保持在Na +耗尽的饮食(<0.87mmol Na + / kg)上以增加血浆醛固酮水平时,PKD2变为细胞质隔室。用醛固酮(10nm)的鼠M1皮质收集管道(M1-CCD)细胞在30分钟内促进与Trans-Golgi网络的PKD2共定位。 PKD2在醛固酮治疗10分钟内在Ser876中进行自身磷酸化,并保持至少24小时的磷酸化(活性)。开发了稳定的PKD2 shRNA敲低(PKD2 KD)M1-CCD细胞系,以研究PKD2在上皮族Na +通道(ENAC)贩运和Transepelallial Na +转运(SCC)中的起始单层中的作用。 PKD2 KD细胞与当量相当于野生型电池的动力学开发了Transepithelial抗性,然而,PKD2敲除CCD上皮细胞显着升高了Transepithelial电压和Na +电流。较高的基础SCC是由于ENAC活性增加。醛固酮治疗24小时导致PKD2 KD细胞中的ENAC活性下降,而不是在野生型细胞中观察到的增加。 PKD2 KD上皮中醛固酮对SCC的矛盾抑制归因于ENAC的enac电流和较低膜丰度的降低,证明PKD2在ENAC贩运和通道亚基稳定中发挥着临界滋补作用。醛固酮的PKD2的快速激活是与MR的转录活性协同作用,并有助于增加ENAC活性。

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