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Selective binding of a toxin and phosphatidylinositides to a mammalian potassium channel

机译:毒素和磷脂酰肌醇与哺乳动物钾通道的选择性结合

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摘要

G-protein-gated inward rectifying potassium channels (GIRKs) require Gβγ subunits and phosphorylated phosphatidylinositides (PIPs) for gating. Although studies have provided insight into these interactions, the mechanism of how these events are modulated by Gβγ and the binding affinity between PIPs and GIRKs remains poorly understood. Here, native ion mobility mass spectrometry is employed to directly monitor small molecule binding events to mouse GIRK2. GIRK2 binds the toxin tertiapin Q and PIPs selectively and with significantly higher affinity than other phospholipids. A mutation in GIRK2 that causes a rotation in the cytoplasmic domain, similarly to Gβγ-binding to the wild-type channel, revealed differences in the selectivity towards PIPs. More specifically, PIP isoforms known to weakly activate GIRKs have decreased binding affinity. Taken together, our results reveal selective small molecule binding and uncover a mechanism by which rotation of the cytoplasmic domain can modulate GIRK•PIP interactions.
机译:G蛋白门控的内向整流钾通道(GIRK)需要Gβγ亚基和磷酸化磷脂酰肌醇(PIP)进行门控。尽管研究已经提供了对这些相互作用的见解,但对这些事件如何由Gβγ调控以及PIP和GIRK之间的结合亲和力的机制仍然知之甚少。在这里,采用天然离子迁移质谱法直接监测与小鼠GIRK2的小分子结合事件。 GIRK2选择性结合毒素tertiapin Q和PIP,并且比其他磷脂具有更高的亲和力。 GIRK2中的突变导致细胞质结构域发生旋转,类似于与野生型通道结合的Gβγ,揭示了对PIP选择性的差异。更具体地,已知弱激活GIRK的PIP同工型具有降低的结合亲和力。综上所述,我们的结果揭示了选择性小分子结合并揭示了胞质结构域旋转可调节GIRK•PIP相互作用的机制。

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