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Divalent cation-mediated interaction between cerebroside sulfate and cerebrosides: an investigation of the effect of structural variations of lipids by electrospray ionization mass spectrometry.

机译:硫酸脑苷脂和脑苷脂之间的二价阳离子介导的相互作用:通过电喷雾电离质谱法研究脂质结构变化的影响。

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摘要

Divalent cations mediate a carbohydrate-carbohydrate association between the two major glycolipids, galactosylceramide (GalCer) and its sulfated form, cerebroside sulfate (CBS), of the myelin sheath. We have suggested that interaction between these glycolipids on apposed extracellular surfaces of myelin may be involved in the stability or function of this multilayered structure. A mutant mouse lacking galactolipids because of a disruption in the gene that encodes a galactosyltransferase forms myelin that initially appears relatively normal but is unstable. This myelin contains glucosylceramide (GlcCer) instead of GalCer. To better understand the role of GlcCer in myelin in this mutant, we have compared the ability of divalent cations to complex CBS (galactosyl form) with GlcCer or GalCer in methanol solution by using positive ion electrospray ionization mass spectrometry. Because both the alpha-hydroxylated fatty acid species (HFA) and the nonhydroxylated fatty acid species (NFA) of these lipids occur in myelin, we have also compared the HFA and NFA species. In addition to monomeric Ca2+ complexes of all three lipids and oligomeric Ca2+ complexes of both GalCer and GlcCer, Ca2+ also caused heterotypic complexation of CBS to both GalCer and GlcCer. The heterotypic complexes had the greatest stability of all oligomers formed and survived better at high declustering potentials. Complexes of CBS with GlcCer were less stable than those with GalCer. This was confirmed by using the free sugars and glycosides making up the carbohydrate headgroups of these lipids. HFA species of CBS and GalCer formed more stable complexes than NFA species, but hydroxylation of the fatty acid of GlcCer had no effect. The ability of GlcCer to also complex with CBS, albeit with lower stability, may allow GlcCer to partially compensate for the absence of GalCer in the mouse mutant.
机译:二价阳离子介导两个主要糖脂半乳糖神经酰胺(GalCer)及其髓鞘的硫酸化形式脑苷硫酸盐(CBS)之间的碳水化合物-碳水化合物缔合。我们已经提出,髓磷脂的并置的细胞外表面上的这些糖脂之间的相互作用可能涉及该多层结构的稳定性或功能。由于编码半乳糖基转移酶的基因被破坏而缺少半乳糖脂的突变小鼠形成了髓磷脂,其最初看起来相对正常但不稳定。该髓磷脂包含葡萄糖基神经酰胺(GlcCer)而不是GalCer。为了更好地了解此突变体中髓鞘蛋白中GlcCer的作用,我们使用正离子电喷雾电离质谱法比较了二价阳离子与甲醇溶液中的GlcCer或GalCer形成复杂CBS(半乳糖基形式)的二价阳离子的能力。因为这些脂质的α-羟基脂肪酸(HFA)和非羟基脂肪酸(NFA)都存在于髓磷脂中,所以我们也比较了HFA和NFA种类。除了所有三种脂质的单体Ca2 +复合物以及GalCer和GlcCer的寡聚Ca2 +复合物之外,Ca2 +还引起CBS与GalCer和GlcCer的异型复合。在所有形成的低聚物中,异型复合物具有最大的稳定性,并且在高解簇电位下可以更好地生存。 CBS与GlcCer的复合物比与GalCer的复合物不稳定。这通过使用构成这些脂质的碳水化合物头基的游离糖和糖苷得到证实。 CBS和GalCer的HFA种类比NFA种类形成更稳定的配合物,但GlcCer脂肪酸的羟基化作用不明显。尽管稳定性较低,但GlcCer也能与CBS复合的能力可能使GlcCer能够部分补偿小鼠突变体中GalCer的缺失。

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