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Kir6.2 mutations causing neonatal diabetes provide new insights into Kir6.2–SUR1 interactions

机译:导致新生儿糖尿病的Kir6.2突变为Kir6.2–SUR1相互作用提供了新见解

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摘要

ATP-sensitive K+ (KATP) channels, comprised of pore-forming Kir6.2 and regulatory SUR1 subunits, play a critical role in regulating insulin secretion. Binding of ATP to Kir6.2 inhibits, whereas interaction of MgATP with SUR1 activates, KATP channels. We tested the functional effects of two Kir6.2 mutations (Y330C, F333I) that cause permanent neonatal diabetes mellitus, by heterologous expression in Xenopus oocytes. Both mutations reduced ATP inhibition and increased whole-cell currents, which in pancreatic β-cells is expected to reduce insulin secretion and precipitate diabetes. The Y330C mutation reduced ATP inhibition both directly, by impairing ATP binding (and/or transduction), and indirectly, by stabilizing the intrinsic open state of the channel. The F333I mutation altered ATP binding/transduction directly. Both mutations also altered Kir6.2/SUR1 interactions, enhancing the stimulatory effect of MgATP (which is mediated via SUR1). This effect was particularly dramatic for the Kir6.2-F333I mutation, and was abolished by SUR1 mutations that prevent MgATP binding/hydrolysis. Further analysis of F333I heterozygous channels indicated that at least three SUR1 must bind/hydrolyse MgATP to open the mutant KATP channel.
机译:ATP敏感的K + (KATP)通道由成孔的Kir6.2和调节性SUR1亚基组成,在调节胰岛素分泌中起关键作用。 ATP与Kir6.2的结合会受到抑制,而MgATP与SUR1的相互作用会激活KATP通道。我们通过非洲爪蟾卵母细胞中的异源表达测试了导致永久性新生儿糖尿病的两个Kir6.2突变(Y330C,F333I)的功能作用。两种突变均降低了ATP抑制并增加了全细胞电流,这在胰腺β细胞中有望减少胰岛素分泌并促使糖尿病发作。 Y330C突变既可以通过削弱ATP结合(和/或转导)来直接降低ATP抑制,又可以通过稳定通道的固有开放状态来间接降低ATP抑制。 F333I突变直接改变了ATP结合/转导。这两个突变也改变了Kir6.2 / SUR1的相互作用,从而增强了MgATP(通过SUR1介导)的刺激作用。此效应对于Kir6.2-F333I突变特别显着,并且已被阻止MgATP结合/水解的SUR1突变所取消。对F333I杂合通道的进一步分析表明,至少三个SUR1必须结合/水解MgATP才能打开突变KATP通道。

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