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Sphingolipids: the nexus between Gaucher disease and insulin resistance

机译:鞘脂:高雪氏病和胰岛素抵抗之间的联系

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Sphingolipids constitute a diverse array of lipids in which fatty acids are linked through amide bonds to a long-chain base, and, structurally, they form the building blocks of eukaryotic membranes. Ceramide is the simplest and serves as a precursor for the synthesis of the three main types of complex sphingolipids; sphingomyelins, glycosphingolipids and gangliosides. Sphingolipids are no longer considered mere structural spectators, but bioactive molecules with functions beyond providing a mechanically stable and chemically resistant barrier to a diverse array of cellular processes. Although sphingolipids form a somewhat minor component of the total cellular lipid pool, their accumulation in certain cells forms the basis of many diseases. Human diseases caused by alterations in the metabolism of sphingolipids are conventionally inborn errors of degradation, the most common being Gaucher disease, in which the catabolism of glucosylceramide is defective and accumulates. Insulin resistance has been reported in patients with Gaucher disease and this article presents evidence that this is due to perturbations in the metabolism of sphingolipids. Ceramide and the more complex sphingolipids, the gangliosides, are constituents of specialised membrane microdomains termed lipid rafts. Lipid rafts play a role in facilitating and regulating lipid and protein interactions in cells, and their unique lipid composition enables them to carry out this role. The lipid composition of rafts is altered in cell models of Gaucher disease which may be responsible for impaired lipid and protein sorting observed in this disorder, and consequently pathology. Lipid rafts are also necessary for correct insulin signalling, and a perturbed lipid raft composition may impair insulin signalling. Unravelling common nodes of interaction between insulin resistance and Gaucher disease may lead to a better understanding of the biochemical mechanisms behind pathology.
机译:鞘脂构成了各种各样的脂质,其中脂肪酸通过酰胺键与长链碱基相连,并且在结构上构成真核细胞膜的组成部分。神经酰胺是最简单的化合物,可作为合成三种主要类型的鞘脂的前体。鞘磷脂,糖鞘脂和神经节苷脂。鞘脂不再被视为仅仅是结构上的旁观者,而是具有生物活性的分子,其功能超出了对各种细胞过程提供机械稳定和化学耐受的屏障的范围。尽管鞘脂在总细胞脂质库中占很小的一部分,但它们在某些细胞中的积累却构成了许多疾病的基础。由鞘脂代谢改变引起的人类疾病通常是先天性的降解错误,最常见的是高雪氏病,其中糖基神经酰胺的分解代谢是有缺陷的并积累。高雪氏病患者已有胰岛素抵抗的报道,本文提供了证据表明这是由于鞘脂代谢紊乱引起的。神经酰胺和更复杂的鞘脂,神经节苷脂,是称为脂筏的专门膜微区的组成部分。脂质筏在促进和调节细胞中脂质和蛋白质的相互作用中起着作用,它们独特的脂质组成使其能够发挥这种作用。在高雪氏病的细胞模型中,筏的脂质组成发生了变化,这可能是导致在这种疾病中观察到的脂质和蛋白质分选受损的原因,并因此导致了病理。脂质筏对于正确的胰岛素信号传导也是必要的,并且受干扰的脂质筏组成可能会损害胰岛素信号传导。阐明胰岛素抵抗与戈谢病之间相互作用的共同点可能会导致更好地了解病理学背后的生化机制。

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