首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Molecular dissection of the myelin-associated glycoprotein receptor complex reveals cell type–specific mechanisms for neurite outgrowth inhibition
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Molecular dissection of the myelin-associated glycoprotein receptor complex reveals cell type–specific mechanisms for neurite outgrowth inhibition

机译:髓鞘相关糖蛋白受体复合物的分子解剖揭示了特定类型的神经突生长抑制机制

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摘要

Neuronal Nogo66 receptor-1 (NgR1) binds the myelin inhibitors NogoA, OMgp, and myelin-associated glycoprotein (MAG) and has been proposed to function as the ligand-binding component of a receptor complex that also includes Lingo-1, p75NTR, or TROY. In this study, we use Vibrio cholerae neuraminidase (VCN) and mouse genetics to probe the molecular composition of the MAG receptor complex in postnatal retinal ganglion cells (RGCs). We find that VCN treatment is not sufficient to release MAG inhibition of RGCs; however, it does attenuate MAG inhibition of cerebellar granule neurons. Furthermore, the loss of p75NTR is not sufficient to release MAG inhibition of RGCs, but p75NTR−/− dorsal root ganglion neurons show enhanced growth on MAG compared to wild-type controls. Interestingly, TROY is not a functional substitute for p75NTR in RGCs. Finally, NgR1 −/− RGCs are strongly inhibited by MAG. In the presence of VCN, however, NgR1 −/− RGCs exhibit enhanced neurite growth. Collectively, our experiments reveal distinct and cell type–specific mechanisms for MAG-elicited growth inhibition.
机译:神经元Nogo66受体-1(NgR1)与髓磷脂抑制剂NogoA,OMgp和髓磷脂相关糖蛋白(MAG)结合,并被提议作为受体复合物的配体结合成分,其中还包括Lingo-1,p75 NTR 或TROY。在这项研究中,我们使用霍乱弧菌神经氨酸酶(VCN)和小鼠遗传学来探测出生后视网膜神经节细胞(RGC)中MAG受体复合物的分子组成。我们发现,VCN处理不足以释放MAG抑制RGC。然而,它确实减弱了小脑颗粒神经元的MAG抑制作用。此外,p75 NTR 的缺失不足以释放MAG对RGC的抑制作用,但是与野生动物相比,p75 NTR-/-背根神经节神经元在MAG上的生长增强。类型控件。有趣的是,TROY并不是RGC中p75 NTR 的功能替代品。最终,NgR1 -/- RGC被MAG强烈抑制。但是,在存在VCN的情况下,NgR1 -/- RGC的神经突生长增强。总的来说,我们的实验揭示了MAG引起的生长抑制的独特且特定于细胞类型的机制。

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