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A universally conserved residue in the SUR1 subunit of the KATP channel is essential for translating nucleotide binding at SUR1 into channel opening

机译:KATP通道SUR1亚基中的一个普遍保守的残基对于将SUR1处的核苷酸结合转化为通道开放至关重要

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摘要

The sulphonylurea receptor (SUR1) subunit of the ATP-sensitive potassium (KATP) channel is a member of the ATP-binding cassette (ABC) protein family. Binding of MgADP to nucleotide-binding domain 2 (NBD2) is critical for channel activation. We identified a residue in NBD2 (G1401) that is fully conserved among ABC proteins and whose functional importance is unknown. Homology modelling places G1401 on the outer surface of the protein, distant from the nucleotide-binding site. The ATPase activity of purified SUR1-NBD2-G1410R (bound to maltose-binding protein) was slightly inhibited when compared to the wild-type protein, but its inhibition by MgADP was unchanged, indicating that MgADP binding is not altered. However, MgADP activation of channel activity was abolished. This implies that the G1401R mutation impairs the mechanism by which MgADP binding to NBD2 is translated into opening of the KATP channel pore. The location of G1401 would be consistent with interaction of this residue with the pore-forming Kir6.2 subunit. Channel activity in the presence of MgATP reflects the balance between the stimulatory (at SUR1) and inhibitory (at Kir6.2) effects of nucleotides. Mutant channels were 2.5-fold less sensitive to MgATP inhibition and not activated by MgATP. This suggests that ATP block of the channel is reduced by the SUR1 mutation. Interestingly, this effect was dependent on the functional integrity of the NBDs. These results therefore suggest that SUR1 modulates both nucleotide inhibition and activation of the KATP channel.
机译:ATP敏感钾(KATP)通道的磺酰脲受体(SUR1)亚基是ATP结合盒(ABC)蛋白家族的成员。 MgADP与核苷酸结合域2(NBD2)的结合对于通道激活至关重要。我们在NBD2(G1401)中鉴定出一个在ABC蛋白之间完全保守的残基,其功能重要性未知。同源性建模将G1401放置在蛋白质外表面上,远离核苷酸结合位点。与野生型蛋白相比,纯化的SUR1-NBD2-G1410R(与麦芽糖结合蛋白结合)的ATPase活性受到轻微抑制,但MgADP对其的抑制作用未改变,表明MgADP结合没有改变。但是,MgADP通道活性的激活被取消。这意味着G1401R突变会削弱MgADP与NBD2结合转化为KATP通道孔开放的机制。 G1401的位置将与该残基与形成孔的Kir6.2亚基的相互作用一致。在MgATP存在下的通道活性反映了核苷酸的刺激作用(在SUR1)和抑制作用(在Kir6.2)之间的平衡。突变通道对MgATP抑制的敏感性降低了2.5倍,并且未被MgATP激活。这表明通道的ATP阻滞因SUR1突变而减少。有趣的是,这种影响取决于NBD的功能完整性。因此,这些结果表明,SUR1既调节核苷酸抑制又调节KATP通道的激活。

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