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硫脂对于中枢神经系统髓鞘和轴突结构的维持至关重要。

Sulfatide is essential for the maintenance of CNS myelin and axon structure.

作者信息

Marcus J, Honigbaum S, Shroff S, Honke K, Rosenbluth J, Dupree J L

机构信息

Department of Anatomy and Neurobiology, Virginia Commonwealth University, Richmond, 23298-0709, USA.

出版信息

Glia. 2006 Mar;53(4):372-81. doi: 10.1002/glia.20292.

Abstract

Galactocerebroside (GalC) and sulfatide are abundant myelin lipids. In mice incapable of synthesizing these lipids, myelin is thin and regionally unstable and exhibits several subtle structural abnormalities. Although galactolipid-null mice have been beneficial in the analysis of galactolipid function, it has not been possible to differentiate between the functions of GalC and sulfatide with these mice alone. In the present work, we have analyzed a murine model that forms normal levels of GalC but is incapable of synthesizing sulfatide. By comparing a plethora of morphological features between the galactolipid-null and the sulfatide-null mice, we have begun to differentiate between the specific functions of these closely related lipids. The most striking difference between these two mutants is the reduction of myelin developmental abnormalities (e.g., redundant and uncompacted myelin sheaths) in young adult sulfatide-null mice as compared with the galactolipid-null animals. Although sulfatide appears to play a limited role in myelin development, this lipid is essential for myelin maintenance, as the prevalence of redundant, uncompacted, and degenerating myelin sheaths as well as deteriorating nodal/paranodal structure is increased significantly in aged sulfatide-null mice as compared with littermate wildtype mice. Finally, we show that the role played by sulfatide in CNS maintenance is not limited to the myelin sheath, as axonal caliber and circularity are normal in young adult mutant mice but are significantly altered in aged sulfatide-null animals.

摘要

半乳糖脑苷脂(GalC)和硫脂是丰富的髓磷脂脂质。在无法合成这些脂质的小鼠中,髓磷脂很薄且局部不稳定,并表现出一些细微的结构异常。尽管缺乏半乳糖脂的小鼠在分析半乳糖脂功能方面很有用,但仅用这些小鼠无法区分GalC和硫脂的功能。在本研究中,我们分析了一种小鼠模型,该模型能形成正常水平的GalC,但无法合成硫脂。通过比较缺乏半乳糖脂的小鼠和缺乏硫脂的小鼠之间的大量形态学特征,我们开始区分这些密切相关脂质的特定功能。这两种突变体之间最显著的差异是,与缺乏半乳糖脂的动物相比,年轻成年缺乏硫脂的小鼠中髓磷脂发育异常(如多余且未紧密压实的髓鞘)减少。尽管硫脂在髓磷脂发育中似乎起有限的作用,但这种脂质对髓磷脂的维持至关重要,因为与同窝野生型小鼠相比,老年缺乏硫脂的小鼠中多余、未紧密压实和退化的髓鞘以及恶化的结旁/结间结构的发生率显著增加。最后,我们表明硫脂在中枢神经系统维持中所起的作用不仅限于髓鞘,因为年轻成年突变小鼠的轴突直径和圆度正常,但在老年缺乏硫脂的动物中则显著改变。

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