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通过基质辅助激光解吸电离飞行时间质谱快速展示生物材料中硫苷脂分子种类的多样性

Rapid demonstration of diversity of sulfatide molecular species from biological materials by MALDI-TOF MS.

作者信息

Kyogashima Mamoru, Tamiya-Koizumi Keiko, Ehara Takashi, Li Gang, Hu Rui, Hara Atsushi, Aoyama Toshifumi, Kannagi Reiji

机构信息

Department of Metabolic Regulation, Institute on Aging and Adaptation, Shinshu University Graduate School of Medicine, 3-1-1, Asahi, Matsumoto, Nagano, 390-8621, Japan.

出版信息

Glycobiology. 2006 Aug;16(8):719-28. doi: 10.1093/glycob/cwj122. Epub 2006 May 2.

Abstract

By combining the partition method for enrichment of sulfatides without any chromatographic procedures and the preparation method of lysosulfatides, we succeeded in analyzing these sulfated glycosphingolipids from biological materials by matrix-assisted laser desorption and ionization time-of-flight mass spectrometry (MALDI-TOF MS) to reduce the complexity of mass fragmentation patterns within a day. We found that sulfated GalCer (HSO3-3Gal beta 1Cer) (SM4s [galactosylsulfatide]) was composed of different species. While composition of SM4s specifically depended on source materials, it always contained hydroxy fatty acids of various degrees. In addition to the common sphingoid 4-sphingenine (d18:1), uncommon/unusual sphingoids phytosphingosine (4-hydroxysphinganine) (t18:0), eicosasphinganine (d20:0), 4-eicosasphingenine (d20:1), and sphingadienine (d18:2) were easily detected. Finally, in addition to SM4s, sulfatide sulfated LacCer (HSO3-3Gal beta 4Glc beta 1Cer) (SM3 [sulfated lactosylceramide]) and sulfated Gg3Cer (GalNAc beta 4(HSO3-3)Gal beta 4Glc beta 1Cer) (SM2 [sulfated gangliotriaosylceramide]) were clearly detected in renal tubule cells. The major SM4s was composed of ceramides possessing d18:1 with C22 hydroxy fatty acids (C22:0 h), C23:0 h, and C24:0 h, whereas the major SM3/SM2 were composed of ceramides possessing t18:0 with C22 normal fatty acids (C22:0), C23:0, C24:0. Namely, in these two series of sulfatides, either fatty acids or sphingoids were hydroxylated, and chain lengths of these components were exactly the same, consequently resulting in a similar polarity of ceramide moieties in these sulfatide species. These results demonstrated diversities of sulfatide molecular species, not only with respect to sugar moieties but also to ceramide moieties, which are probably important for specific effective functions in particular microenvironments such as lipid membrane microdomains.

摘要

通过结合无需任何色谱程序即可富集硫苷脂的分离方法和溶血硫苷脂的制备方法,我们成功地利用基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)分析了生物材料中的这些硫酸化糖鞘脂,从而在一天内降低了质量碎片模式的复杂性。我们发现硫酸化半乳糖脑苷脂(HSO3-3Galβ1Cer)(SM4s[半乳糖基硫苷脂])由不同的种类组成。虽然SM4s的组成具体取决于来源材料,但它总是含有不同程度的羟基脂肪酸。除了常见的鞘氨醇4-鞘氨醇(d18:1)外,还很容易检测到不常见/异常的鞘氨醇植物鞘氨醇(4-羟基鞘氨醇)(t18:0)、二十碳鞘氨醇(d20:0)、4-二十碳鞘氨醇(d20:1)和鞘氨二烯(d18:2)。最后,除了SM4s外,在肾小管细胞中还清晰地检测到硫苷脂硫酸化乳糖脑苷脂(HSO3-3Galβ4Glcβ1Cer)(SM3[硫酸化乳糖基神经酰胺])和硫酸化Gg3Cer(GalNAcβ4(HSO3-3)Galβ4Glcβ1Cer)(SM2[硫酸化神经节三糖基神经酰胺])。主要的SM4s由含有d18:1和C22羟基脂肪酸(C22:0 h)、C23:0 h和C24:0 h的神经酰胺组成,而主要的SM3/SM2由含有t18:0和C22正常脂肪酸(C22:0)、C23:0、C24:0的神经酰胺组成。也就是说,在这两类硫苷脂中,脂肪酸或鞘氨醇被羟基化,并且这些成分的链长完全相同,因此导致这些硫苷脂种类中神经酰胺部分具有相似的极性。这些结果证明了硫苷脂分子种类的多样性,不仅在糖部分,而且在神经酰胺部分,这可能对脂质膜微区等特定微环境中的特定有效功能很重要。

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