首页> 外文期刊>Molecular biology of the cell >Very-long-chain fatty acid sphingomyelin in nuclear lipid microdomains of hepatocytes and hepatoma cells: can the exchange from C24:0 to C16:0 affect signal proteins and vitamin D receptor?
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Very-long-chain fatty acid sphingomyelin in nuclear lipid microdomains of hepatocytes and hepatoma cells: can the exchange from C24:0 to C16:0 affect signal proteins and vitamin D receptor?

机译:肝细胞和肝癌细胞的核脂质微区中的超长链脂肪酸鞘磷脂:从C24:0到C16:0的交换会影响信号蛋白和维生素D受体吗?

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Lipid microdomains localized in the inner nuclear membrane are considered platforms for active chromatin anchoring. Stimuli such as surgery, vitamin D, or glucocorticoid drugs influence their gene expression, DNA duplication, and RNA synthesis. In this study, we used ultrafast liquid chromatography–tandem mass spectrometry to identify sphingomyelin (SM) species coupled with immunoblot analysis to comprehensively map differences in nuclear lipid microdomains (NLMs) purified from hepatocytes and hepatoma cells. We showed that NLMs lost saturated very-long-chain fatty acid (FA; C24:0) SM in cancer cells and became enriched in long-chain FA (C16:0) SM. We also found that signaling proteins, such as STAT3, Raf1, and PKCζ, were increased and vitamin D receptor was reduced in cancer cells. Because recent researches showed a shift in sphingolipid composition from C24:0 to C16:0 in relation to cell life, we performed a comparative analysis of properties among C16:0 SM, C24:0 SM, and cholesterol. Our results led us to hypothesize that the enrichment of C16:0 SM could determine enhanced dynamic properties of NLMs in cancer cells with an increased shuttling of protein signaling molecules.
机译:位于内部核膜的脂质微区被认为是活性染色质锚定的平台。诸如手术,维生素D或糖皮质激素之类的刺激会影响其基因表达,DNA复制和RNA合成。在这项研究中,我们使用超快速液相色谱-串联质谱法鉴定鞘磷脂(SM)种类,并结合免疫印迹分析来全面标绘从肝细胞和肝癌细胞中纯化的核脂质微区(NLM)的差异。我们显示,NLM在癌细胞中损失了饱和的超长链脂肪酸(FA; C24:0)SM,并富含长链FA(C16:0)SM。我们还发现癌细胞中的信号蛋白(例如STAT3,Raf1和PKCζ)增加,维生素D受体减少。因为最近的研究表明鞘脂成分从C24:0到C16:0随细胞寿命而变化,所以我们对C16:0 SM,C24:0 SM和胆固醇之间的性质进行了比较分析。我们的结果使我们假设C16:0 SM的富集可以确定NLM在癌细胞中增强的动态特性,同时增加蛋白质信号分子的穿梭。

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