首页> 外文期刊>The Journal of Membrane Biology: An International Journal for Studies on the Structure, Function & Genesis of Biomembranes >Phosphorylation regulates an inwardly rectifying ATP-sensitive K(+)- conductance in proximal tubule cells of frog kidney.
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Phosphorylation regulates an inwardly rectifying ATP-sensitive K(+)- conductance in proximal tubule cells of frog kidney.

机译:磷酸化调节青蛙肾脏近端肾小管细胞内向整流的ATP敏感K(+)-电导。

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摘要

K(+) channels in the renal proximal tubule play an important role in salt reabsorption. Cells of the frog proximal tubule demonstrate an inwardly rectifying, ATP-sensitive K(+) conductance that is inhibited by Ba(2+), G(Ba). In this paper we have investigated the importance of phosphorylation state on the activity of G(Ba) in whole-cell patches. In the absence of ATP, G(Ba) decreased over time; this fall in G(Ba) involved phosphorylation, as rundown was inhibited by alkaline phosphatase and was accelerated by the phosphatase inhibitor F(-)(10 mM: ). Activation of PKC using the phorbol ester PMA accelerated rundown via a mechanism that was dependent on phosphorylation. In contrast, the inactive phorbol ester PDC slowed rundown. Inclusion of the PKC inhibitor PKC-ps in the pipette inhibited rundown. These data indicate that PKC-mediated phosphorylation promotes channel rundown. Rundown was prevented by the inclusion of PIP-2 in the pipette. PIP-2 also abrogated the PMA-mediated increase in rundown, suggesting that regulation of G(Ba) by PIP-2 occurred downstream of PKC-mediated phosphorylation. G-protein activation inhibited G(Ba), with initial currents markedly reduced in the presence of GTPgammas. These properties are consistent with G(Ba) being a member of the ATP-sensitive K(+) channel family.
机译:肾近端小管中的K(+)通道在盐重吸收中起重要作用。青蛙近端小管的细胞表现出被Ba(2 +),G(Ba)抑制的向内整流,ATP敏感的K(+)电导。在本文中,我们研究了全细胞膜片中磷酸化状态对G(Ba)活性的重要性。在没有ATP的情况下,G(Ba)随时间下降; G(Ba)的下降涉及磷酸化,因为碱性磷酸酶抑制了降解,而磷酸酶抑制剂F(-)(10 mM:)则加速了降解。使用佛波酯PMA激活PKC可以通过依赖于磷酸化的机制来加速降解。相反,非活性佛波酯PDC减慢了降解速度。移液管中包含PKC抑制剂PKC-ps可抑制流失。这些数据表明PKC介导的磷酸化促进通道减少。通过在移液管中加入PIP-2可防止流失。 PIP-2还废除了PMA介导的流失增加,这表明PIP-2对G(Ba)的调节发生在PKC介导的磷酸化下游。 G蛋白激活抑制G(Ba),而在GTPgammas的存在下,初始电流显着降低。这些属性与G(Ba)是ATP敏感K(+)通道家族的成员一致。

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