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首页> 外文期刊>The Journal of Experomental Medicine >CNS myelin induces regulatory functions of DC-SIGN–expressing, antigen-presenting cells via cognate interaction with MOG
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CNS myelin induces regulatory functions of DC-SIGN–expressing, antigen-presenting cells via cognate interaction with MOG

机译:中枢神经系统髓磷脂通过与MOG的同源相互作用诱导表达DC-SIGN的抗原呈递细胞的调节功能

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Myelin oligodendrocyte glycoprotein (MOG), a constituent of central nervous system myelin, is an important autoantigen in the neuroinflammatory disease multiple sclerosis (MS). However, its function remains unknown. Here, we show that, in healthy human myelin, MOG is decorated with fucosylated N -glycans that support recognition by the C-type lectin receptor (CLR) DC-specific intercellular adhesion molecule-3–grabbing nonintegrin (DC-SIGN) on microglia and DCs. The interaction of MOG with DC-SIGN in the context of simultaneous TLR4 activation resulted in enhanced IL-10 secretion and decreased T cell proliferation in a DC-SIGN-, glycosylation-, and Raf1-dependent manner. Exposure of oligodendrocytes to proinflammatory factors resulted in the down-regulation of fucosyltransferase expression, reflected by altered glycosylation at the MS lesion site. Indeed, removal of fucose on myelin reduced DC-SIGN–dependent homeostatic control, and resulted in inflammasome activation, increased T cell proliferation, and differentiation toward a Th17-prone phenotype. These data demonstrate a new role for myelin glycosylation in the control of immune homeostasis in the healthy human brain through the MOG–DC-SIGN homeostatic regulatory axis, which is comprised by inflammatory insults that affect glycosylation. This phenomenon should be considered as a basis to restore immune tolerance in MS.
机译:髓磷脂少突胶质细胞糖蛋白(MOG)是中枢神经系统髓磷脂的成分,是神经炎性疾病多发性硬化症(MS)的重要自身抗原。但是,其功能仍然未知。在这里,我们表明,在健康的人类髓磷脂中,MOG修饰有岩藻糖基化的N-聚糖,这些糖支持通过C型凝集素受体(CLR)DC特异性细胞间粘附分子3-捕获小胶质细胞的整合素(DC-SIGN)和DC。在同时TLR4激活的情况下,MOG与DC-SIGN的相互作用导致依赖DC-SIGN,糖基化和Raf1依赖性方式增强的IL-10分泌和减少的T细胞增殖。少突胶质细胞暴露于促炎因子导致岩藻糖基转移酶表达下调,这反映在MS病变部位糖基化改变。实际上,去除髓磷脂上的岩藻糖会降低DC-SIGN依赖的稳态控制,并导致炎症小体激活,T细胞增殖增加以及向Th17倾向表型的分化。这些数据证明了髓磷脂糖基化在通过MOG-DC-SIGN稳态调节轴控制健康人脑中的免疫稳态方面的新作用,该调节轴由影响糖基化的炎症损伤组成。该现象应被视为恢复MS免疫耐受的基础。

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