The regulation of ion channels and transporters by anionic phospholipids is currently very topical. G protein-gated K(+) channels from the Kir3.0 family are involved in slowing the heart rate, generating late inhibitory postsynaptic potentials and controlling hormone release from neuroendocrine cells. There is considerable functional precedent for the control of these channels by phosphatidylinositol 4,5-bisphosphate. In this study, we used a biochemical assay to investigate the lipid binding properties of Kir3.0 channel domains. We reveal a differential binding affinity to a range of phosphoinositides between the C termini of the Kir3.0 isoforms. Furthermore, the N terminus in addition to the C terminus of Kir3.4 is necessary to observe binding and is decreased by the mutations R72A, K195A and R196A but not K194A. Protein kinase C phosphorylation of the Kir3.1 C-terminal fusion protein decreases anionic phospholipid binding. The differential binding affinity has functional consequences as the inhibition of homomeric Kir3.1, occurring after M3 receptor activation, recovers over minutes while homomeric Kir3.2 does not.

译文

:阴离子磷脂对离子通道和转运蛋白的调节目前非常热门。 Kir3.0家族的G蛋白门控的K()通道参与减慢心率,产生晚期抑制的突触后电位并控制神经内分泌细胞的激素释放。磷脂酰肌醇4,5-双磷酸酯对这些通道的控制有相当大的功能先例。在这项研究中,我们使用生化分析来研究Kir3.0通道域的脂质结合特性。我们揭示了对Kir3.0亚型的C末端之间的一系列磷酸肌醇的不同结合亲和力。此外,除了观察Kir3.4的C末端外,N末端对于观察结合也是必需的,并且由于突变R72A,K195A和R196A而不是K194A而降低。 Kir3.1 C端融合蛋白的蛋白激酶C磷酸化减少了阴离子磷脂的结合。差异结合亲和力具有功能性后果,因为抑制M3受体激活后发生的同源Kir3.1抑制会在数分钟内恢复,而同源Kir3.2不会恢复。

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