首页> 美国卫生研究院文献>Journal of Lipid Research >Renal sulfatides: sphingoid base-dependent localization and region-specific compensation of CerS2-dysfunction
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Renal sulfatides: sphingoid base-dependent localization and region-specific compensation of CerS2-dysfunction

机译:肾脏硫酸盐:鞘鞘碱基依赖的本地化和CerS2功能障碍的区域特定补偿。

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摘要

Mammalian kidneys are rich in sulfatides. Papillary sulfatides, especially, contribute to renal adaptation to chronic metabolic acidosis. Due to differences in their cer­amide (Cer) anchors, the structural diversity of renal sulfatides is large. However, the underling biological function of this complexity is not understood. As a compound’s function and its tissue location are intimately connected, we analyzed individual renal sulfatide distributions of control and Cer synthase 2 (CerS)2-deficient mice by imaging MS (IMS) and by LC-MS2 (in controls for the cortex, medulla, and papillae separately). To explain locally different structures, we compared our lipid data with regional mRNA levels of corresponding anabolic enzymes. The combination of IMS and in source decay-LC-MS2 analyses revealed exclusive expression of C20-sphingosine-containing sulfatides within the renal papillae, whereas conventional C18-sphingosine-containing compounds were predominant in the medulla, and sulfatides with a C18-phytosphingosine were restricted to special cortical structures. CerS2 deletion resulted in bulk loss of sulfatides with C23/C24-acyl chains, but did not lead to decreased urinary pH, as previously observed in sulfatide-depleted kidneys. The reasons may be the almost unchanged C22-sulfatide levels and constant total renal sulfatide levels due to compensation with C16- to C20-acyl chain-containing compounds. Intriguingly, CerS2-deficient kidneys were completely depleted of phytosphingosine-containing cortical sulfatides without any compensation.
机译:哺乳动物的肾脏富含硫化物。乳头状脂多糖尤其有助于肾脏适应慢性代谢性酸中毒。由于它们的神经酰胺(Cer)锚的差异,因此肾脏硫酸脂的结构多样性很大。但是,这种复杂性的基础生物学功能尚不明确。由于化合物的功能及其组织位置密切相关,我们通过成像MS(IMS)和LC-MS 2 分析了对照小鼠和Cer合酶2(CerS)2缺陷小鼠的单个肾脏硫酸脂分布。 (分别在皮质,髓质和乳头的对照中)。为了解释局部不同的结构,我们将脂质数据与相应合成代谢酶的区域mRNA水平进行了比较。 IMS和源衰变-LC-MS 2 分析的结合揭示了肾乳头内含C20-鞘氨醇的硫化物的独家表达,而常规的C18-鞘氨醇的化合物在髓质中占主导地位,带有C18-植物鞘氨醇的硫化物仅限于特殊的皮质结构。 CerS2缺失导致具有C23 / C24-酰基链的硫化物的大量损失,但并未导致尿液pH降低,如先前在消耗硫酸盐的肾脏中观察到的那样。原因可能是由于用含C16至C20酰基链的化合物补偿而导致的C22硫化物水平几乎不变,而总肾脏总硫化物水平不变。有趣的是,缺乏CerS2的肾脏已完全耗尽了含有植物鞘氨醇的皮质硫酸盐,而没有任何补偿。

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