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Mechanisms of angiotensin II stimulation of NCC are time-dependent in mDCT15 cells

机译:血管紧张素 II 刺激 NCC 的机制在 mDCT15 细胞中具有时间依赖性

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Angiotensin II (ANG II) increases thiazide-sensitive sodium-chloride cotransporter (NCC) activity both acutely and chronically. ANG II has been implicated as a switch that turns WNK4 from an inhibitor of NCC into an activator of NCC, and ANG II's effect on NCC appears to require WNK4. Chronically, ANG II stimulation of NCC results in an increase in total and phosphorylated NCC, but the role of NCC phosphorylation in acute ANG II actions is unclear. Here, using a mammalian cell model with robust native NCC activity, we corroborate the role that ANG II plays in WNK4 regulation and clarify the role of Ste20-related proline alanine-rich kinase (SPAK)-induced NCC phosphorylation in ANG II action. ANG II was noted to have a biphasic effect on NCC, with a peak increase in NCC activity in the physiologic range of 10~(-11) M ANG II. This effect was apparent as early as 15 min and remained sustained through 120 min. These changes correlated with significant increases in NCC surface protein expression. Knockdown of WNK4 expression sharply attenuated the effect of ANG II. SPAK knockdown did not affect ANG II action at early time points (15 and 30 min), but it did attenuate the response at 60 min. Correspondingly, NCC phosphorylation did not increase at 15 or 30 min, but increased significantly at 60 min. We therefore conclude that within minutes of an increase in ANG II, NCC is rapidly trafficked to the cell surface in a phosphorylation-independent but WNK4-dependent manner. Then, after 60 min, ANG II induces SPAK-dependent phosphorylation of NCC.
机译:血管紧张素 II (ANG II) 可急性和慢性增加噻嗪类敏感的氯化钠协同转运蛋白 (NCC) 活性。ANG II 被认为是将 WNK4 从 NCC 抑制剂转变为 NCC 激活剂的开关,而 ANG II 对 NCC 的作用似乎需要 WNK4。长期而言,ANG II 刺激 NCC 导致总 NCC 和磷酸化 NCC 增加,但 NCC 磷酸化在急性 ANG II 作用中的作用尚不清楚。在这里,我们使用具有强大天然 NCC 活性的哺乳动物细胞模型,证实了 ANG II 在 WNK4 调控中的作用,并阐明了 Ste20 相关脯氨酸富含丙氨酸激酶 (SPAK) 诱导的 NCC 磷酸化在 ANG II 作用中的作用。 注意到 ANG II 对 NCC 具有双相作用,NCC 活性在 10~(-11) M ANG II 的生理范围内达到峰值增加。这种效果早在 15 分钟就很明显,并持续到 120 分钟。这些变化与NCC表面蛋白表达的显着增加相关。WNK4表达的敲除大大减弱了ANG II的作用。SPAK敲除在早期时间点(15和30分钟)不影响ANG II作用,但在60分钟时确实减弱了反应。相应地,NCC磷酸化在15或30 min时没有增加,但在60 min时显着增加。因此,我们得出结论,在 ANG II 增加的几分钟内,NCC 以不依赖磷酸化但依赖 WNK4 的方式迅速运输到细胞表面。然后,60分钟后,ANG II诱导NCC的SPAK依赖性磷酸化。

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