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Trans interactions between galactosylceramide and cerebroside sulfate across apposed bilayers.

机译:半乳糖基神经酰胺和脑苷硫酸盐之间跨并置双层的反式相互作用。

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摘要

The two glycosphingolipids galactosylceramide (GalC) and its sulfated form, cerebroside sulfate (CBS), are present at high concentrations in the multilayered myelin sheath and are involved in carbohydrate-carbohydrate interactions between the lipid headgroups. In order to study the structure of the complex of these two glycolipids by Fourier transform infrared (FTIR) spectroscopy, GalC dispersions were combined with CBS dispersions in the presence and absence of Ca(2+). The FTIR spectra indicated that a strong interaction occurred between these glycolipids even in the absence of Ca(2+). The interaction resulted in dehydration of the sulfate, changes in the intermolecular hydrogen bonding interactions of the sugar and other oxygens, decreased intermolecular hydrogen bonding of the amide C==O of GalC and dehydration of the amide region of one or both of the lipids in the mixture, and disordering of the hydrocarbon chains of both lipids. The spectra also show that Ca(2+) interacts with the sulfate of CBS. Although they do not reveal which other groups of CBS and GalC interact with Ca(2+) or which groups participate in the interaction between the two lipids, they do show that the sulfate is not directly involved in interaction with GalC, since it can still bind to Ca(2+) in the mixture. The interaction between these two lipids could be either a lateral cis interaction in the same bilayer or a trans interaction between apposed bilayers. The type of interaction between the lipids, cis or trans, was investigated using fluorescent and spin-label probes and anti-glycolipid antibodies. The results confirmed a strong interaction between the GalC and the CBS microstructures. They suggested further that this interaction caused the CBS microstructures to be disrupted so that CBS formed a single bilayer around the GalC multilayered microstructures, thus sequestering GalC from the external aqueous phase. Thus the CBS and GalC interacted via a trans interaction across apposed bilayers, which resulted in dehydration of the headgroup and interface region of both lipid bilayers. The strong interaction between these lipids may be involved in stabilization of the myelin sheath.
机译:两种糖鞘脂半乳糖神经酰胺(GalC)及其硫酸化形式,脑苷硫酸盐(CBS)以高浓度存在于多层髓鞘中,并参与脂质头基之间的碳水化合物与碳水化合物的相互作用。为了通过傅里叶变换红外(FTIR)光谱研究这两个糖脂的复合物的结构,在存在和不存在Ca(2+)的情况下,将GalC分散体与CBS分散体结合。 FTIR光谱表明,即使在没有Ca(2+)的情况下,这些糖脂之间也发生了强烈的相互作用。相互作用导致硫酸盐脱水,糖和其他氧的分子间氢键相互作用的变化,GalC的酰胺C == O的分子间氢键的减少以及其中一个或两个脂质的酰胺区的脱水混合物,两种脂质的烃链无序。光谱还表明,Ca(2+)与CBS的硫酸盐相互作用。尽管他们没有揭示出CBS和GalC的哪些其他基团与Ca(2+)相互作用,或者哪些基团参与了两种脂质之间的相互作用,但它们确实表明硫酸盐并不直接参与与GalC的相互作用,因为它仍然可以结合到混合物中的Ca(2+)。这两种脂质之间的相互作用可能是同一双层中的横向顺式相互作用或并置双层之间的反式相互作用。使用荧光和自旋标记探针和抗糖脂抗体研究了脂质之间的相互作用类型,顺式还是反式。结果证实了GalC和CBS微结构之间的强相互作用。他们进一步提出,这种相互作用导致CBS的微结构被破坏,从而使CBS在GalC多层微结构周围形成一个双层,从而将GalC与外部水相隔离。因此,CBS和GalC通过跨并置的双层的反式相互作用而相互作用,这导致两个脂质双层的头基和界面区域脱水。这些脂质之间的强相互作用可能与髓鞘的稳定有关。

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