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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Molecular basis of the interactions of the Nogo-66 receptor and its homolog NgR2 with myelin-associated glycoprotein: development of NgROMNI-Fc, a novel antagonist of CNS myelin inhibition.
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Molecular basis of the interactions of the Nogo-66 receptor and its homolog NgR2 with myelin-associated glycoprotein: development of NgROMNI-Fc, a novel antagonist of CNS myelin inhibition.

机译:Nogo-66受体及其同系物NgR2与髓磷脂相关糖蛋白相互作用的分子基础:NgROMNI-Fc(中枢神经系统髓磷脂抑制的新型拮抗剂)的发展。

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摘要

Myelin-associated glycoprotein (MAG) is a sialic acid-binding Ig-family lectin that functions in neuronal growth inhibition and stabilization of axon-glia interactions. The ectodomain of MAG is comprised of five Ig-like domains and uses neuronal cell-type-specific mechanisms to signal growth inhibition. We show that the first three Ig-like domains of MAG bind with high affinity and in a sialic acid-dependent manner to the Nogo-66 receptor-1 (NgR1) and its homolog NgR2. Domains Ig3-Ig5 of MAG are sufficient to inhibit neurite outgrowth but fail to associate with NgR1 or NgR2. Nogo receptors are sialoglycoproteins comprised of 8.5 canonical leucine-rich repeats (LRR) flanked by LRR N-terminal (NT) and C-terminal (CT)-cap domains. The LRR cluster is connected through a stalk region to a membrane lipid anchor. The CT-cap domain and stalk region of NgR2, but not NgR1, are sufficient for MAG binding, and when expressed in neurons, exhibit constitutive growth inhibitory activity. The LRR cluster of NgR1 supports binding of Nogo-66, OMgp, and MAG. Deletion of disulfide loop Cys(309)-Cys(336) of NgR1 selectively increases its affinity for Nogo-66 and OMgp. A chimeric Nogo receptor variant (NgR(OMNI)) in which Cys(309)-Cys(336) is deleted and followed by a 13 aa MAG-binding motif of the NgR2 stalk, shows superior binding of OMgp, Nogo-66, and MAG compared with wild-type NgR1 or NgR2. Soluble NgR(OMNI) (NgR(OMNI)-Fc) binds strongly to membrane-bound inhibitors and promotes neurite outgrowth on both MAG and CNS myelin substrates. Thus, NgR(OMNI)-Fc may offer therapeutic opportunities following nervous system injury or disease where myelin inhibits neuronal regeneration.
机译:髓磷脂相关糖蛋白(MAG)是结合唾液酸的Ig家族凝集素,在神经元生长抑制和轴突-胶质细胞相互作用的稳定中起作用。 MAG的胞外域由五个Ig样域组成,并使用神经元细胞类型特异性机制来抑制生长。我们显示MAG的前三个Ig样域以高亲和力和唾液酸依赖性方式结合到Nogo-66 receptor-1(NgR1)及其同源物NgR2。 MAG的Ig3-Ig5结构域足以抑制神经突向外生长,但不能与NgR1或NgR2缔合。 Nogo受体是由8.5个富含亮氨酸的重复序列(LRR)和LRR N端(NT)和C端(CT)帽结构域组成的唾液酸糖蛋白。 LRR簇通过茎区域连接至膜脂质锚。 NgR2的CT帽结构域和茎区域而不是NgR1足以进行MAG结合,并且当在神经元中表达时,显示出组成型生长抑制活性。 NgR1的LRR群集支持Nogo-66,OMgp和MAG的绑定。 NgR1的二硫键环Cys(309)-Cys(336)的删除选择性地增加了其对Nogo-66和OMgp的亲和力。一个嵌合的Nogo受体变异体(NgR(OMNI)),其中Cys(309)-Cys(336)被删除,然后是NgR2茎的13aa MAG结合基序,显示了OMgp,Nogo-66和MAG与野生型NgR1或NgR2相比。可溶性NgR(OMNI)(NgR(OMNI)-Fc)与膜结合抑制剂牢固结合,并促进MAG和CNS髓磷脂底物上的神经突生长。因此,NgR(OMNI)-Fc可能在神经系统损伤或髓磷脂抑制神经元再生的疾病后提供治疗机会。

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