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首页> 外文期刊>Cellular Physiology and Biochemistry >Protein kinase B alpha (PKBα) stimulates the epithelial sodium channel (ENaC) heterologously expressed in xenopus laevis oocytes by two distinct mechanisms
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Protein kinase B alpha (PKBα) stimulates the epithelial sodium channel (ENaC) heterologously expressed in xenopus laevis oocytes by two distinct mechanisms

机译:蛋白激酶Bα(PKBα)通过两种不同的机制刺激非洲爪蟾卵母细胞异源表达的上皮钠通道(ENaC)

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摘要

Kinases contribute to the regulation of the epithelial sodium channel (ENaC) in a complex manner. For example, SGK1 (serum- and glucocorticoid- inducible kinase type 1) enhances ENaC surface expression by phosphorylating Nedd4-2, thereby preventing ENaC retrieval and degradation. An additional mechanism of ENaC activation by SGK1 involves an SGK consensus motif (~(616)RSRYWS~(621)) in the C-terminus of the channel's α-subunit. This consensus motif may also be a target for ENaC regulation by protein kinase B α (PKBα) known to be activated by insulin and growth factors. Therefore, we investigated a possible role of PKBα in the regulation of rat ENaC heterologously expressed in Xenopus laevis oocytes. We found that recombinant PKBα included in the pipette solution increased ENaC currents in outside-out patches by about 4-fold within 15-20 min. Replacing the serine residue S621 of the SGK consensus motif by an alanine (S621A) abolished this stimulatory effect. In co-expression experiments active PKBα but not catalytically inactive PKBα significantly increased ENaC whole-cell currents and surface expression by more than 50 % within 24 hours of co-expression. Interestingly, this stimulatory effect was preserved in oocytes expressing ENaC with the S621A mutation. We conclude that the acute stimulatory effect of PKBα involves a specific kinase consensus motif in the C-terminus of the channel's α-subunit. In contrast, the increase in channel surface expression caused by co-expression of PKBα does not depend on this site in the channel and is probably mediated by an effect on channel trafficking.
机译:激酶以复杂的方式有助于上皮钠通道(ENaC)的调节。例如,SGK1(血清和糖皮质激素诱导型1型激酶)通过使Nedd4-2磷酸化来增强ENaC表面表达,从而防止ENaC检索和降解。 SGK1激活ENaC的其他机制涉及在通道的α亚基的C末端存在一个SGK共有基序(〜(616)RSRYWS〜(621))。该共有基序也可能是已知被胰岛素和生长因子激活的蛋白激酶Bα(PKBα)进行ENaC调控的目标。因此,我们研究了PKBα在调节非洲爪蟾卵母细胞异源表达的大鼠ENaC中的可能作用。我们发现,移液器溶液中包含的重组PKBα在15-20分钟内使外而外的贴剂中的ENaC电流增加了约4倍。用丙氨酸(S621A)代替SGK共有基序的丝氨酸残基S621消除了这种刺激作用。在共表达实验中,有活性的PKBα但无催化活性的PKBα在共表达的24小时内显着增加了ENaC全细胞电流和表面表达50%以上。有趣的是,这种刺激作用在表达具有S621A突变的ENaC的卵母细胞中得以保留。我们得出结论,PKBα的急性刺激作用在通道的α亚基的C端涉及特定的激酶共有基序。相反,由PKBα的共表达引起的通道表面表达的增加不依赖于通道中的该位点,并且可能由对通道运输的影响来介导。

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