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Interaction between mutations in the slide helix of Kir6.2 associated with neonatal diabetes and neurological symptoms

机译:与新生儿糖尿病相关的Kir6.2滑动螺旋突变与神经系统症状之间的相互作用

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摘要

ATP-sensitive potassium (KATP) channels regulate insulin secretion from pancreatic beta-cells. Gain-of-function mutations in the genes encoding the Kir6.2 and SUR1 subunits of this channel cause neonatal diabetes. We report two novel mutations on the same haplotype (cis), F60Y and V64L, in the slide helix of Kir6.2 in a patient with neonatal diabetes, developmental delay and epilepsy. Functional analysis revealed the F60Y mutation increases the intrinsic channel open probability (Po(0)), thereby indirectly producing a marked decrease in channel inhibition by ATP and an increase in whole-cell KATP currents. When expressed alone, the V64L mutation caused a small reduction in apparent ATP inhibition, by enhancing the ability of MgATP to stimulate channel activity. The V64L mutation also ameliorated the deleterious effects on the F60Y mutation when it was expressed on the same (but not a different) subunit. These data indicate that F60Y is the pathogenic mutation and reveal that interactions between slide helix residues can influence KATP channel gating.
机译:ATP敏感性钾(K ATP )通道调节胰岛β细胞的胰岛素分泌。该通道的Kir6.2和SUR1亚基编码基因的功能获得性突变导致新生儿糖尿病。我们报道了在患有新生儿糖尿病,发育迟缓和癫痫病患者的Kir6.2幻灯片螺旋中相同的单倍型(顺式)F60Y和V64L的两个新突变。功能分析表明,F60Y突变增加了固有通道开放概率(Po (0)),从而间接导致ATP通道抑制作用显着降低,而全细胞K ATP < / sub>当前。当单独表达时,V64L突变通过增强MgATP刺激通道活性的能力而引起明显的ATP抑制作用的小幅降低。当V64L突变在相同(但不是不同)亚基上表达时,它也改善了F60Y突变的有害作用。这些数据表明F60Y是致病性突变,并表明载玻片螺旋残基之间的相互作用可以影响K ATP 通道门控。

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  • 来源
    《Human Molecular Genetics》 |2010年第6期|p.963-972|共10页
  • 作者单位

    Henry Wellcome Centre for Gene Function, Department of Physiology, Anatomy and Genetics, University of Oxford, Parks Road, Oxford OX1 3PT, UK,;

    Starship Children's Health, Private Bag 992024, Auckland, New Zealand and;

    Institute of Biomedical and Clinical Research, Peninsula Medical School, Exeter EX2 5DW, UK;

    Institute of Biomedical and Clinical Research, Peninsula Medical School, Exeter EX2 5DW, UK;

    Institute of Biomedical and Clinical Research, Peninsula Medical School, Exeter EX2 5DW, UK;

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