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SMPDL3b modulates insulin receptor signaling in diabetic kidney disease

机译:SMPDL3b调节糖尿病肾病中的胰岛素受体信号传导

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摘要

Sphingomyelin phosphodiesterase acid-like 3b (SMPDL3b) is a lipid raft enzyme that regulates plasma membrane (PM) fluidity. Here we report that SMPDL3b excess, as observed in podocytes in diabetic kidney disease (DKD), impairs insulin receptor isoform B-dependent pro-survival insulin signaling by interfering with insulin receptor isoforms binding to caveolin-1 in the PM. SMPDL3b excess affects the production of active sphingolipids resulting in decreased ceramide-1-phosphate (C1P) content as observed in human podocytes in vitro and in kidney cortexes of diabetic db/db mice in vivo. Podocyte-specific Smpdl3b deficiency in db/db mice is sufficient to restore kidney cortex C1P content and to protect from DKD. Exogenous administration of C1P restores IR signaling in vitro and prevents established DKD progression in vivo. Taken together, we identify SMPDL3b as a modulator of insulin signaling and demonstrate that supplementation with exogenous C1P may represent a lipid therapeutic strategy to treat diabetic complications such as DKD.
机译:鞘磷脂磷酸二酯酸样3b(SMPDL3b)是一种脂筏酶,调节质膜(PM)的流动性。在这里我们报告说,如在糖尿病肾病(DKD)的足细胞中观察到的SMPDL3b过量,通过干扰与PM中的Caveave-1结合的胰岛素受体同工型,损害胰岛素受体同工型B依赖的生存前胰岛素信号转导。 SMPDL3b过量会影响活性鞘脂的产生,导致体外人足细胞和体内db / db糖尿病小鼠肾皮质中神经酰胺-1-磷酸(C1P)含量降低。 db / db小鼠中足细胞特异性Smpdl3b缺乏症足以恢复肾皮质C1P含量并保护免受DKD侵害。 C1P的外源给药可在体外恢复IR信号传导,并在体内阻止已建立的DKD进展。两者合计,我们确定SMPDL3b作为胰岛素信号的调节剂,并证明补充外源性C1P可能代表脂质治疗策略,以治疗糖尿病并发症,如DKD。

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