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Mechanism of INSR clustering with insulin activation and resistance revealed by super-resolution imaging

机译:INSR集群机制与胰岛素激活和抵抗了超分辨率成像

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Insulin receptor (INSR) is a key protein in the INSR signaling pathway and plays a critical role in biological processes, especially in the regulation of glucose homeostasis. Many metabolic diseases are often accompanied by abnormal INSR signaling. However, the specific effector mechanisms regulating insulin resistance and the distribution patterns of INSR during cell membrane activation remain unclear. Here, we investigated the changes in the distribution of INSR during activation using super-resolution imaging. By observing the connection between INSR activation and its distribution, we found that insulin resistance inhibits its receptor clustering. More importantly, we found that INSR has a highly co-localized relationship with the skeletal protein βII-spectrin. Specific knockout of βII-spectrin inhibited the interaction of INSR with GLUT4 and affected the normal metabolism of glucose. Our work elucidates the effects of insulin activation and insulin resistance on INSR distribution and reveals a potential relationship between INSR and cytoskeleton at the single molecule level, which promotes a deeper understanding of the roles associated with insulin signaling and insulin resistance.
机译:胰岛素受体(INSR)是一种关键的蛋白质INSR信号通路和起着至关重要的作用在生物过程中,特别是在葡萄糖调节体内平衡。疾病往往伴随着INSR异常信号。调节胰岛素抵抗的机制INSR在细胞的分布模式膜激活尚不清楚。调查了分布的变化在激活期间INSR使用超分辨率成像。激活及其分布,我们发现胰岛素抵抗抑制它的受体集群。有一个高硝唑关系骨架蛋白βII-spectrin。的βII-spectrin抑制INSR之间的交互GLUT4和正常代谢的影响葡萄糖。INSR激活胰岛素和胰岛素抵抗分布,揭示了一个潜在的关系INSR和细胞骨架之间的单身分子水平,促进更深对相关的角色的理解胰岛素信号和胰岛素抵抗。

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