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Spacial models of malfunctioned protein complexes help to elucidate signal transduction critical for insulin release

机译:故障蛋白复合物的空间模型有助于阐明对胰岛素释放至关重要的信号转导

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摘要

Mutations in gene KCNJ11 encoding the Kir6.2 subunit of the ATP-sensitive potassium channel (KATP), a representative of a quite complex biosystem, may affect insulin release from pancreatic beta-cells. Both gain and loss of channel activity are observed, which lead to varied clinical phenotypes ranging from neonatal diabetes to congenital hyperinsulinism. In order to understand the mechanisms of the channel function better we mapped, based on the literature review, known medically relevant Kir6.2/SUR1 mutations into recently (2017) determined CryoEM 3D structures of this complex. We used a clustering algorithm to find hots spots in the 3D structure, thus we may hypothesize about their nano-mechanical role in the channel gating and the insulin level control. We also adapted a simple model of the channel gating to cover all currently known factors that can influence the KATP biosystem functions.
机译:在编码ATP敏感钾通道(KATP)的基因KCNJ11中的突变,是一种相当复杂的生物系统的代表,可能影响来自胰腺β细胞的胰岛素释放。 观察到渠道活动的增益和丧失,这导致多种临床表型从新生儿糖尿病到先天性胰岛素。 为了了解频道功能的机制,我们根据文献综述,在最近(2017)中已知医学相关的KIR6.2 / SUR1突变,以近期(2017)确定该复合物的Cryoem 3D结构。 我们使用聚类算法在3D结构中找到热点斑点,因此我们可以在通道门控和胰岛素水平控制中假设其纳米机械作用。 我们还调整了一个简单的频道窗格模型,以涵盖可以影响KATP生物系统功能的所有当前已知因素。

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