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Positive Regulation of Insulin Signaling by Neuraminidase 1

机译:神经氨酸酶1对胰岛素信号的正调控

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摘要

Neuraminidases (sialidases) catalyze the removal of sialic acid residues from sialylated glycoconjugates. We now report that mammalian neuraminidase 1 (Neu1), in addition to its catabolic function in lysosomes, is transported to the cell surface where it is involved in the regulation of insulin signaling. Insulin binding to its receptor rapidly induces interaction of the receptor with Neu1, which hydrolyzes sialic acid residues in the glycan chains of the receptor and, consequently, induces its activation. Cells from sialidosis patients with a genetic deficiency of Neu1 show impairment of insulin-induced phosphorylation of downstream protein kinase AKT, and treatment of these cells with purified Neu1 restores signaling. Genetically modified mice with ∼10% of the normal Neu1 activity exposed to a high-fat diet develop hyperglycemia and insulin resistance twice as fast as their wild-type counterparts. Together, these studies identify Neu1 as a novel component of the signaling pathways of energy metabolism and glucose uptake.
机译:神经氨酸酶(唾液酸酶)催化从唾液酸化的糖缀合物中除去唾液酸残基。现在,我们报道哺乳动物神经氨酸酶1(Neu1),除了在溶酶体中的分解代谢功能外,还被转运到细胞表面,参与胰岛素信号的调节。胰岛素与其受体结合会迅速诱导受体与Neu1相互作用,后者会水解受体聚糖链中的唾液酸残基,从而诱导其活化。遗传性Neu1基因缺陷的唾液酸中毒患者的细胞显示出胰岛素诱导的下游蛋白激酶AKT磷酸化受损,用纯化的Neu1基因处理这些细胞可恢复信号传导。高脂饮食中具有约10%正常Neu1活性的转基因小鼠,其高血糖和胰岛素抵抗的速度是野生型小鼠的两倍。总之,这些研究将Neu1鉴定为能量代谢和葡萄糖摄取信号传导途径的新组成部分。

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