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首页> 外文期刊>American Journal of Physiology >Adenosine modulates Mg(2+) uptake in distal convoluted tubule cells via A(1) and A(2) purinoceptors.
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Adenosine modulates Mg(2+) uptake in distal convoluted tubule cells via A(1) and A(2) purinoceptors.

机译:腺苷通过A(1)和A(2)嘌呤受体调节远端回旋小管细胞中Mg(2+)的吸收。

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tk;1Adenosine plays a role in the control of water and electrolyte reabsorption in the distal tubule. As the distal convoluted tubule is important in the regulation of renal Mg(2+) balance, we determined the effects of adenosine on cellular Mg(2+) uptake in this segment. The effect of adenosine was studied on immortalized mouse distal convoluted tubule (MDCT) cells, a model of the intact distal convoluted tubule. The rate of Mg(2+) uptake was measured with fluorescence techniques using mag-fura 2. To assess Mg(2+) uptake, MDCT cells were first Mg(2+) depleted to 0.22 +/- 0.01 mM by being cultured in Mg(2+)-free media for 16 h and then placed in 1.5 mM MgCl(2); next, changes in intracellular Mg(2+) concentration ([Mg(2+)](i)) were determined. [Mg(2+)](i) returned to basal levels, 0.53 +/- 0.02 mM, with a mean refill rate, d([Mg(2+)](i))/dt, of 137 +/- 16 nM/s. Adenosine stimulates basal Mg(2+) uptake by 41 +/- 10%. The selective A(1) purinoceptor agonist N(6)-cyclopentyladenosine (CPA) increased intracellular Ca(2+) and decreased parathyroid hormone (PTH)-stimulated cAMP formation and PTH-mediated Mg(2+) uptake. On the other hand, the selective A(2) receptor agonist 2-[p-(2-carbonyl-ethyl)-phenylethylamino]-5'-N-ethylcarboxamidoadenosine (CGS) stimulated Mg(2+) entry in a concentration-dependent fashion. CGS increased cAMP formation and the protein kinase A inhibitor RpcAMPS inhibited CGS-stimulated Mg(2+) uptake. Selective inhibition of phospholipase C, protein kinase C, or mitogen-activated protein kinase enzyme cascades with U-73122, Ro-31-8220, and PD-98059, respectively, diminished A(2) agonist-mediated Mg(2+) entry. Aldosterone potentiated CGS-mediated Mg(2+) entry, and elevation of extracellular Ca(2+) diminished CGS-responsive cAMP formation and Mg(2+) uptake. Accordingly, MDCT cells possess both A(1) and A(2) purinoceptor subtypes with intracellular signaling typical of these respective receptors. We conclude that adenosine has dual effects on Mg(2+) uptake in MDCT cells through separate A(1) and A(2) purinoceptor pathways.
机译:tk; 1腺苷在控制远端小管中水和电解质的重吸收中发挥作用。由于远曲小管在肾脏Mg(2+)平衡的调节中很重要,因此我们确定了腺苷对这一节中细胞Mg(2+)摄取的影响。研究了腺苷对永生化的小鼠远曲小管(MDCT)细胞(完整的远曲小管的模型)的作用。 Mg(2+)摄取的速率是使用mag-fura 2荧光技术测量的。为了评估Mg(2+)摄取,首先将MDCT细胞通过培养在Mg(2+)中消耗至0.22 +/- 0.01 mM。不含Mg(2+)的培养基16小时,然后置于1.5 mM MgCl(2)中;接下来,确定细胞内Mg(2+)浓度([Mg(2 +)](i))的变化。 [Mg(2 +)](i)恢复到基础水平0.53 +/- 0.02 mM,平均补充速度d([Mg(2 +)](i))/ dt为137 +/- 16 nM /秒腺苷刺激基础Mg(2+)摄取41 +/- 10%。选择性A(1)嘌呤受体激动剂N(6)-环戊腺苷(CPA)增加细胞内Ca(2+)和减少甲状旁腺激素(PTH)刺激的cAMP形成和PTH介导的Mg(2+)摄取。另一方面,选择性A(2)受体激动剂2- [p-(2-羰基-乙基)-苯基乙基氨基] -5'-N-乙基羧酰胺基腺苷(CGS)刺激Mg(2+)进入,其浓度依赖性时尚。 CGS增加cAMP的形成和蛋白激酶A抑制剂RpcAMPS抑制CGS刺激的Mg(2+)摄取。选择性抑制磷脂酶C,蛋白激酶C或促分裂原激活的蛋白激酶酶分别与U-73122,Ro-31-8220和PD-98059级联,从而减少了A(2)激动剂介导的Mg(2+)进入。醛固酮增强CGS介导的Mg(2+)的进入和细胞外Ca(2+)的升高减少CGS响应cAMP形成和Mg(2+)的吸收。因此,MDCT细胞同时具有A(1)和A(2)嘌呤受体亚型,这些受体具有典型的细胞内信号传导功能。我们得出结论,腺苷通过单独的A(1)和A(2)嘌呤受体途径对MDCT细胞中Mg(2+)的吸收具有双重影响。

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