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髓鞘中的糖突触?

A glycosynapse in myelin?

作者信息

Boggs Joan M, Wang Huimin, Gao Wen, Arvanitis Dina N, Gong Yanping, Min Weixian

机构信息

Division of Structural Biology and Biochemistry, Research Institute, Hospital for Sick Children, 555 University Ave., Toronto, ON, Canada M5G 1X8.

出版信息

Glycoconj J. 2004;21(3-4):97-110. doi: 10.1023/B:GLYC.0000044842.34958.f8.

Abstract

Myelin, the multilayered membrane which surrounds nerve axons, is the only example of a membranous structure where contact between extracellular surfaces of membrane from the same cell occurs. The two major glycosphingolipids (GSLs) of myelin, galactosylceramide (GalC) and its sulfated form, galactosylceramide I(3)-sulfate (SGC), can interact with each other by trans carbohydrate-carbohydrate interactions across apposed membranes. They occur in detergent-insoluble lipid rafts containing kinases and thus may be located in membrane signaling domains. These signaling domains may contact each other across apposed extracellular membranes, thus forming glycosynapses in myelin. Multivalent forms of these carbohydrates, GalC/SGC-containing liposomes, or galactose conjugated to albumin, have been added to cultured oligodendrocytes (OLs) to mimic interactions which might occur between these signaling domains when OL membranes or the extracellular surfaces of myelin come into contact. These interactions between multivalent carbohydrate and the OL membrane cause co-clustering or redistribution of myelin GSLs, GPI-linked proteins, several transmembrane proteins, and signaling proteins to the same membrane domains. They also cause depolymerization of the cytoskeleton, indicating that they cause transmission of a signal across the membrane. Their effects have similarities to those of anti-GSL antibodies on OLs, shown by others, suggesting that the multivalent carbohydrate interacts with GalC/SGC in the OL membrane. Communication between the myelin sheath and the axon regulates both axonal and myelin function and is necessary to prevent neurodegeneration. Participation of transient GalC and SGC interactions in glycosynapses between the apposed extracellular surfaces of mature compact internodal myelin might allow transmission of signals throughout the myelin sheath and thus facilitate myelin-axonal communication.

摘要

髓磷脂是围绕神经轴突的多层膜,是同一细胞的膜细胞外表面之间发生接触的膜结构的唯一例子。髓磷脂的两种主要糖鞘脂(GSLs),半乳糖神经酰胺(GalC)及其硫酸化形式,硫酸化半乳糖神经酰胺I(3)-硫酸盐(SGC),可以通过跨相对膜的反式碳水化合物-碳水化合物相互作用相互作用。它们存在于含有激酶的去污剂不溶性脂筏中,因此可能位于膜信号域中。这些信号域可能通过相对的细胞外膜相互接触,从而在髓磷脂中形成糖突触。这些碳水化合物的多价形式,含GalC/SGC的脂质体,或与白蛋白偶联的半乳糖,已被添加到培养的少突胶质细胞(OLs)中,以模拟当OL膜或髓磷脂的细胞外表面接触时这些信号域之间可能发生的相互作用。多价碳水化合物与OL膜之间的这些相互作用导致髓磷脂GSLs、糖基磷脂酰肌醇(GPI)连接蛋白、几种跨膜蛋白和信号蛋白共聚集或重新分布到同一膜域。它们还导致细胞骨架解聚,表明它们导致信号跨膜传递。它们的作用与其他人所示的抗GSL抗体对OLs的作用相似,表明多价碳水化合物与OL膜中的GalC/SGC相互作用。髓鞘与轴突之间的通讯调节轴突和髓鞘功能,对于预防神经退行性变是必要的。成熟紧密节间髓鞘相对细胞外表面之间的糖突触中短暂的GalC和SGC相互作用的参与可能允许信号在整个髓鞘中传递,从而促进髓鞘-轴突通讯。

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