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Dissociation of the insulin receptor and caveolin-1 complex by ganglioside GM3 in the state of insulin resistance

机译:神经节苷脂GM3在胰岛素抵抗状态下解离胰岛素受体和Caveolin-1复合物

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摘要

Membrane microdomains (lipid rafts) are now recognized as critical for proper compartmentalization of insulin signaling. We previously demonstrated that, in adipocytes in a state of TNFα-induced insulin resistance, the inhibition of insulin metabolic signaling and the elimination of insulin receptors (IR) from the caveolae microdomains were associated with an accumulation of the ganglioside GM3. To gain insight into molecular mechanisms behind interactions of IR, caveolin-1 (Cav1), and GM3 in adipocytes, we have performed immunoprecipitations, cross-linking studies of IR and GM3, and live cell studies using total internal reflection fluorescence microscopy and fluorescence recovery after photobleaching techniques. We found that (i) IR form complexes with Cav1 and GM3 independently; (ii) in GM3-enriched membranes the mobility of IR is increased by dissociation of the IR–Cav1 interaction; and (iii) the lysine residue localized just above the transmembrane domain of the IR β-subunit is essential for the interaction of IR with GM3. Because insulin metabolic signal transduction in adipocytes is known to be critically dependent on caveolae, we propose a pathological feature of insulin resistance in adipocytes caused by dissociation of the IR–Cav1 complex by the interactions of IR with GM3 in microdomains.
机译:膜微区(脂质筏)现已被认为对适当分隔胰岛素信号传导至关重要。我们先前证明,在处于TNFα诱导的胰岛素抵抗状态的脂肪细胞中,胰岛素代谢信号的抑制和来自小窝微结构域的胰岛素受体(IR)的消除与神经节苷脂GM3的积累有关。为了深入了解脂肪细胞中IR,caveolin-1(Cav1)和GM3相互作用的分子机制,我们进行了免疫沉淀,IR和GM3的交联研究以及使用全内反射荧光显微镜和荧光恢复的活细胞研究经过光漂白技术。我们发现(i)IR与Cav1和GM3独立形成络合物; (ii)在富含GM3的膜中,IR-Cav1相互作用的解离提高了IR的流动性; (iii)位于IRβ-亚基的跨膜结构域正上方的赖氨酸残基对于IR与GM3的相互作用至关重要。因为已知脂肪细胞中胰岛素代谢信号转导严重依赖于小窝,所以我们提出了IR – Cav1复合物在微区中与IR和GM3相互作用引起的脂肪细胞中胰岛素抵抗的病理特征。

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