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ABCA8B 缺失通过减少少突胶质前体细胞导致小鼠少突胶质化减少。

Loss of ABCA8B decreases myelination by reducing oligodendrocyte precursor cells in mice.

机构信息

Translational Laboratories in Genetic Medicine, Agency for Science, Technology and Research, Singapore, Singapore; Department of Medicine, Yong Loo Lin School of Medicine, National University of Singapore, Singapore, Singapore; Cardiovascular Research Institute, National University Health System, Singapore, Singapore.

Department of Basic Medical Sciences, Neurosciences, and Sensory Organs, Human Anatomy and Histology Unit, University of Bari School of Medicine, Bari, Italy.

出版信息

J Lipid Res. 2022 Jan;63(1):100147. doi: 10.1016/j.jlr.2021.100147. Epub 2021 Nov 6.

Abstract

The myelin sheath, which is wrapped around axons, is a lipid-enriched structure produced by mature oligodendrocytes. Disruption of the myelin sheath is observed in several neurological diseases, such as multiple sclerosis. A crucial component of myelin is sphingomyelin, levels of which can be increased by ABCA8, a member of the ATP-binding cassette transporter family. ABCA8 is highly expressed in the cerebellum, specifically in oligodendroglia. However, whether ABCA8 plays a role in myelination and mechanisms that would underlie this role remain unknown. Here, we found that the absence of Abca8b, a mouse ortholog of ABCA8, led to decreased numbers of cerebellar oligodendrocyte precursor cells (OPCs) and mature oligodendrocytes in mice. We show that in oligodendrocytes, ABCA8 interacts with chondroitin sulfate proteoglycan 4 (CSPG4), a molecule essential for OPC proliferation, migration, and myelination. In the absence of Abca8b, localization of CSPG4 to the plasma membrane was decreased, contributing to reduced cerebellar CSPG4 expression. Cerebellar CSPG4+ OPCs were also diminished, leading to decreased mature myelinating oligodendrocyte numbers and cerebellar myelination levels in Abca8b mice. In addition, electron microscopy analyses showed that the number of nonmyelinated cerebellar axons was increased, whereas cerebellar myelin thickness (g-ratio), myelin sheath periodicity, and axonal diameter were all decreased, indicative of disordered myelin ultrastructure. In line with disrupted cerebellar myelination, Abca8b mice showed lower cerebellar conduction velocity and disturbed locomotion. In summary, ABCA8 modulates cerebellar myelination, in part through functional regulation of the ABCA8-interacting protein CSPG4. Our findings suggest that ABCA8 disruption may contribute to the pathophysiology of myelin disorders.

摘要

髓鞘是一种包裹在轴突周围的富含脂质的结构,由成熟的少突胶质细胞产生。在几种神经疾病中,如多发性硬化症,都会观察到髓鞘的破坏。髓鞘的一个关键成分是神经鞘磷脂,其水平可以通过 ABCA8 增加,ABCA8 是 ATP 结合盒转运蛋白家族的成员。ABCA8 在小脑高度表达,特别是在少突胶质细胞中。然而,ABCA8 是否在髓鞘形成中发挥作用以及这种作用的潜在机制尚不清楚。在这里,我们发现 ABCA8 的小鼠同源物 Abca8b 的缺失导致小鼠小脑少突胶质前体细胞(OPC)和成熟少突胶质细胞数量减少。我们表明,在少突胶质细胞中,ABCA8 与软骨素硫酸盐蛋白聚糖 4(CSPG4)相互作用,CSPG4 是 OPC 增殖、迁移和髓鞘形成所必需的分子。在 Abca8b 缺失的情况下,CSPG4 向质膜的定位减少,导致小脑 CSPG4 表达减少。小脑 CSPG4+OPC 也减少,导致 Abca8b 小鼠成熟髓鞘形成少突胶质细胞数量和小脑髓鞘化水平降低。此外,电子显微镜分析表明,未髓鞘化的小脑轴突数量增加,而小脑髓鞘厚度(g-比值)、髓鞘周期性和轴突直径均降低,表明髓鞘超微结构紊乱。与小脑髓鞘化紊乱一致,Abca8b 小鼠表现出较低的小脑传导速度和运动障碍。总之,ABCA8 通过调节与 ABCA8 相互作用的蛋白 CSPG4 的功能来调节小脑髓鞘形成。我们的研究结果表明,ABCA8 的破坏可能导致髓鞘疾病的病理生理学发生变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c14/8953628/9a8afac124c3/gr1.jpg

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