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髓磷脂蛋白PLP和MBP的侧膜组织及动力学由不同的半乳糖脂和细胞外基质决定。

The lateral membrane organization and dynamics of myelin proteins PLP and MBP are dictated by distinct galactolipids and the extracellular matrix.

作者信息

Ozgen Hande, Schrimpf Waldemar, Hendrix Jelle, de Jonge Jenny C, Lamb Don C, Hoekstra Dick, Kahya Nicoletta, Baron Wia

机构信息

Department of Cell Biology, University of Groningen, University Medical Center Groningen, Groningen, The Netherlands.

Physical Chemistry, Department of Chemistry, Munich Center for Integrated Protein Science (CiPSM) and Center for Nanoscience (CeNS), Ludwig-Maximilians-Universität, Munich, Germany.

出版信息

PLoS One. 2014 Jul 8;9(7):e101834. doi: 10.1371/journal.pone.0101834. eCollection 2014.

Abstract

In the central nervous system, lipid-protein interactions are pivotal for myelin maintenance, as these interactions regulate protein transport to the myelin membrane as well as the molecular organization within the sheath. To improve our understanding of the fundamental properties of myelin, we focused here on the lateral membrane organization and dynamics of peripheral membrane protein 18.5-kDa myelin basic protein (MBP) and transmembrane protein proteolipid protein (PLP) as a function of the typical myelin lipids galactosylceramide (GalC), and sulfatide, and exogenous factors such as the extracellular matrix proteins laminin-2 and fibronectin, employing an oligodendrocyte cell line, selectively expressing the desired galactolipids. The dynamics of MBP were monitored by z-scan point fluorescence correlation spectroscopy (FCS) and raster image correlation spectroscopy (RICS), while PLP dynamics in living cells were investigated by circular scanning FCS. The data revealed that on an inert substrate the diffusion rate of 18.5-kDa MBP increased in GalC-expressing cells, while the diffusion coefficient of PLP was decreased in sulfatide-containing cells. Similarly, when cells were grown on myelination-promoting laminin-2, the lateral diffusion coefficient of PLP was decreased in sulfatide-containing cells. In contrast, PLP's diffusion rate increased substantially when these cells were grown on myelination-inhibiting fibronectin. Additional biochemical analyses revealed that the observed differences in lateral diffusion coefficients of both proteins can be explained by differences in their biophysical, i.e., galactolipid environment, specifically with regard to their association with lipid rafts. Given the persistence of pathological fibronectin aggregates in multiple sclerosis lesions, this fundamental insight into the nature and dynamics of lipid-protein interactions will be instrumental in developing myelin regenerative strategies.

摘要

在中枢神经系统中,脂蛋白相互作用对髓鞘的维持至关重要,因为这些相互作用调节蛋白质向髓鞘膜的转运以及髓鞘内的分子组织。为了增进我们对髓鞘基本特性的理解,我们在此聚焦于外周膜蛋白18.5 kDa髓鞘碱性蛋白(MBP)和跨膜蛋白蛋白脂蛋白(PLP)的侧向膜组织和动力学,它们是典型髓鞘脂质半乳糖基神经酰胺(GalC)和硫苷脂的函数,以及诸如细胞外基质蛋白层粘连蛋白-2和纤连蛋白等外源性因子的函数,我们采用了一种选择性表达所需半乳糖脂的少突胶质细胞系。通过z扫描点荧光相关光谱法(FCS)和光栅图像相关光谱法(RICS)监测MBP的动力学,而通过圆形扫描FCS研究活细胞中PLP的动力学。数据显示,在惰性底物上,表达GalC的细胞中18.5 kDa MBP的扩散速率增加,而含硫苷脂的细胞中PLP的扩散系数降低。同样,当细胞在促进髓鞘形成的层粘连蛋白-2上生长时,含硫苷脂的细胞中PLP的侧向扩散系数降低。相反,当这些细胞在抑制髓鞘形成的纤连蛋白上生长时,PLP的扩散速率大幅增加。额外的生化分析表明,两种蛋白质侧向扩散系数的观察到的差异可以通过它们生物物理方面的差异来解释,即半乳糖脂环境的差异,特别是关于它们与脂筏的关联。鉴于病理性纤连蛋白聚集体在多发性硬化症病变中的持续存在,这种对脂蛋白相互作用的性质和动力学的基本洞察将有助于制定髓鞘再生策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/930a/4086962/4c686c17bf26/pone.0101834.g001.jpg

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