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Dihydroceramide Desaturase Inhibition by a Cyclopropanated Dihydroceramide Analog in Cultured Keratinocytes

机译:在培养的角质形成细胞中环丙烷化的二氢神经酰胺类似物对二氢神经酰胺去饱和酶的抑制作用

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摘要

Most mammalian sphingolipids contain a 4,5-(E)-double bond. We report on the chemical synthesis of a dihydroceramide derivative that prevents the introduction of the double bond into sphingolipids. Minimal alteration of the parent structure by formally replacing the hydrogen atoms in the 5- and in the 6-position of the sphinganine backbone by a methylene group leads to an inhibitor of dihydroceramide desaturase in cultured cells. In the presence of 10–50 μM of compound (1), levels of biosynthetically formed dihydroceramide and—surprisingly—also of phytoceramide are elevated at the expense of ceramide. The cells respond to the lack of unsaturated sphingolipids by an elevation of mRNAs of enzymes required for sphingosine formation. At the same time, the analysis of proliferation and differentiation markers indicates that the sphingolipid double bond is required to keep the cells in a differentiated state.
机译:大多数哺乳动物的鞘脂均含有4,5-(E)-双键。我们报告了二氢神经酰胺衍生物的化学合成,该化学合成可防止将双键引入鞘脂。通过用亚甲基正式取代鞘氨醇骨架的5-位和6-位的氢原子来最小化母体结构的改变,可在培养的细胞中产生二氢神经酰胺去饱和酶抑制剂。在存在10–50μM的化合物(1)的情况下,生物合成形成的二氢神经酰胺和植物神经酰胺的水平也升高了,而神经酰胺却以这种价格上升。细胞通过鞘氨醇形成所需的酶mRNA的升高来应对不饱和鞘脂的缺乏。同时,对增殖和分化标志物的分析表明,需要鞘脂双键来使细胞保持分化状态。

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  • 作者单位
  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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