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[Ca2+]i determines the effects of protein kinases A and C on activity of rat renal Na+,K+-ATPase

机译:[Ca2 +] i确定蛋白激酶A和C对大鼠肾脏Na +,K + -ATPase活性的影响

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摘要

It is well established that the activity of Na+,K+-ATPase (NKA) is regulated by protein kinases A (PKA) and C (PKC), but results on their effects have been conflicting. The aim of this study was to examine if this is ascribed to the intracellular concentration of Ca2+ ([Ca2+]i).Rat renal NKA was stably expressed in COS cells (green monkey kidney cells). Increases in [Ca2+]i were achieved with the Ca2+ ionophore A23187 and verified by direct measurements of [Ca2+]i using fura-2 AM as an indicator. The activity of NKA was measured as ouabain-sensitive 86Rb+ uptake and the state of phosphorylation of NKA was monitored with two site-directed phosphorylation state-specific antibodies.Activation of PKA with forskolin decreased NKA activity by 45.5 ± 8.9 % at low [Ca2+]i (120 nM) and increased it by 40.5 ± 6.4 % at high [Ca2+]i (420 nM). The change in NKA activity by forskolin correlated with the level of increase in [Ca2+]i.The effect of 1-oleoyl-2-acetoyl-sn-glycerol (OAG), a specific PKC activator, on the activity of NKA was also Ca2+ dependent, being inhibitory when [Ca2+]i was low (29.3 ± 3.6 % decrease at 120 nM Ca2+) and stimulatory when [Ca2+]i was high (36.6 ± 10.1 % increase at 420 nM Ca2+).The α subunit of NKA was phosphorylated under both low and high [Ca2+]i conditions upon PKA or PKC activation. PKA phosphorylates Ser943. PKC phosphorylates Ser23.To see if the observed effects on NKA activity are secondary to changes in Na+ entry, we measured NKA hydrolytic activity using permeabilized membranes isolated from cells under controlled Na+ conditions. A decreased activity at low [Ca2+]i and no change in activity at high [Ca2+]i were observed following forskolin or OAG treatment.Purified NKA from rat renal cortex was phosphorylated and inhibited by PKC. This phosphorylation-associated inhibition of NKA was neither affected by Ca2+ nor by calmodulin, tested alone or together.We conclude that effect of PKA/PKC on NKA activity is dependent on [Ca2+]i. This Ca2+ dependence may provide an explanation for the diversity of responses of NKA to activation of either PKA or PKC.
机译:众所周知,Na +,K + -ATPase(NKA)的活性受蛋白激酶A(PKA)和C(PKC)的调节,但其作用结果却相互矛盾。这项研究的目的是检查这是否归因于细胞内Ca2 +([Ca2 +] i)的浓度。鼠肾NKA在COS细胞(绿猴肾细胞)中稳定表达。使用Ca2 +离子载体A23187可实现[Ca2 +] i的增加,并通过使用fura-2 AM作为指示剂直接测量[Ca2 +] i进行了验证。通过对哇巴因敏感的86Rb +摄取来测量NKA的活性,并用两种定点磷酸化状态特异性抗体监测NKA的磷酸化状态。在较低的[Ca2 +]下,用毛喉素激活PKA可使NKA活性降低45.5±8.9%。 i(120 nM)并在高[Ca2 +] i(420 nM)时增加40.5±6.4%。佛司可林对NKA活性的变化与[Ca2 +] i的增加水平相关。一种特定的PKC活化剂1-油酰基-2-乙酰酰基-sn-甘油(OAG)对NKA活性的影响也是Ca2 +依赖,当[Ca2 +] i低时(120 nM Ca2 +时降低29.3±3.6%)具有抑制性,当[Ca2 +] i高时(420 nM Ca2 +时增加36.6±10.1%)具有刺激性。NKA的α亚基被磷酸化在低和高[Ca2 +] i条件下均可激活PKA或PKC。 PKA使Ser943磷酸化。 PKC使Ser23磷酸化。为观察观察到的对NKA活性的影响是否是Na +进入变化的继发性,我们使用在受控Na +条件下从细胞分离的透化膜测量了NKA水解活性。在福司高林或OAG处理后,观察到低[Ca2 +] i活性降低,而高[Ca2 +] i活性未改变。来自大鼠肾皮质的纯化的NKA被磷酸化并被PKC抑制。单独或一起测试,这种与磷酸化相关的NKA抑制作用不受Ca2 +或钙调蛋白的影响。我们得出结论,PKA / PKC对NKA活性的影响取决于[Ca2 +] i。这种Ca2 +依赖性可以解释NKA对PKA或PKC激活的响应的多样性。

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