Li Zheng-Hao, Lu Feng-Feng, Shao Qi, Zhu Mei, Cao Li
Institute of Neuroscience and Key Laboratory of Molecular Neurobiology of Ministry of Education, The Second Military Medical University, Shanghai 200433, China.
Institute of Health Sciences, Anhui University, Hefei 230601, China.
Sheng Li Xue Bao. 2017 Dec 25;69(6):817-829.
Myelin is a highly specialized membrane structure, wrapping around the axons. It is essential for the protection of axons, insulation and maintenance of the saltatory conduction of the action potential. Myelin membrane is rich in lipids, however, the lipid composition varies significantly from other biological membranes. Since myelination requires extraordinarily high level of lipid synthesis, the integrity of myelin is susceptible to numerous lipid metabolism disorders. Studies on transgenic mice targeting key molecules of various lipid biosynthesis pathways have elucidated the lipid metabolism and functions of myelin. Besides, myelinating glial cells have a remarkable capacity to take up extracellular lipids, which also contributes to myelination. Therefore, understanding the metabolism and functions of myelin lipids will help us to understand the role of lipids in myelin damage-related diseases and provide novel strategies for the treatment of demyelinating diseases. In this paper, some progresses in metabolism and functions of myelin lipids are reviewed.
髓磷脂是一种高度特化的膜结构,包裹着轴突。它对于保护轴突、绝缘以及维持动作电位的跳跃传导至关重要。髓磷脂膜富含脂质,然而,其脂质组成与其他生物膜有显著差异。由于髓鞘形成需要极高水平的脂质合成,髓磷脂的完整性易受多种脂质代谢紊乱的影响。针对各种脂质生物合成途径关键分子的转基因小鼠研究阐明了髓磷脂的脂质代谢和功能。此外,形成髓鞘的神经胶质细胞具有摄取细胞外脂质的显著能力,这也有助于髓鞘形成。因此,了解髓磷脂脂质的代谢和功能将有助于我们理解脂质在与髓磷脂损伤相关疾病中的作用,并为脱髓鞘疾病的治疗提供新策略。本文综述了髓磷脂脂质代谢和功能的一些进展。