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High affinity sialoside ligands of myelin associated glycoprotein.

机译:髓鞘相关糖苷的高亲和力酶配体相关糖蛋白。

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Myelin associated glycoprotein (Siglec-4) is a myelin adhesion receptor, that is, well established for its role as an inhibitor of axonal outgrowth in nerve injury, mediated by binding to sialic acid containing ligands on the axonal membrane. Because disruption of myelin-ligand interactions promotes axon outgrowth, we have sought to develop potent ligand based inhibitors using natural ligands as scaffolds. Although natural ligands of MAG are glycolipids terminating in the sequence NeuAcalpha2-3Galbeta1-3(+/-NeuAcalpha2-6)GalNAcbeta-R, we previously established that synthetic O-linked glycoprotein glycans with the same sequence alpha-linked to Thr exhibited approximately 1000-fold increased affinity ( approximately 1muM). Attempts to increase potency by introducing a benzoylamide substituent at C-9 of the alpha2-3 sialic acid afforded only a two-fold increase, instead of increases of >100-fold observed for other sialoside ligands of MAG. Surprisingly, however, introduction of a 9-N-fluoro-benzoyl substituent on the alpha2-6 sialic acid increased affinity 80-fold, resulting in a potent inhibitor with a K(d) of 15nM. Docking this ligand to a model of MAG based on known crystal structures of other siglecs suggests that the Thr positions the glycan such that aryl substitution of the alpha2-3 sialic acid produces a steric clash with the GalNAc, while attaching an aryl substituent to the other sialic acid positions the substituent near a hydrophobic pocket that accounts to the increase in affinity.
机译:髓鞘相关的糖蛋白(SigleC-4)是一种髓鞘粘附受体,即通过将其在神经损伤中的轴突产物中的抑制剂作用而建立的,通过与轴突膜上的含有配体的配体结合而介导的。由于髓鞘相互作用的破坏促进了Axon Forgrowth,因此我们已经寻求使用天然配体作为支架的有效配体的抑制剂。虽然MAG的天然配体是乙酰吡喃啶序列在Neuacalpha2-3Galbeta1-3(+/- Neuacalpha2-6)Galnacbeta-R中,但我们之前建立了具有与Thrα-连接的相同序列相同序列的合成O-连接的糖蛋白聚糖约为1000 - 折叠增加亲和力(约1mum)。通过在α2-3唾液酸的C-9中引入苯氧酰胺取代基来试图增加效力,得到两个倍数,而不是对于MAG的其它唾液酸锡配体观察到> 100倍的增加。然而,令人惊讶的是,在α2-6唾液酸上引入9-氟 - 苯甲酰基取代基增加了80倍的亲和力,导致k(d)为15nm的效率抑制剂。将该配体基于其他Siglecs的已知晶体结构对接至杂种的模型表明,Thr定位甘油,使得α2-3唾液酸的芳基取代与GalNAc产生空间冲突,同时将芳基取代基与另一个芳基取代产生唾液酸定位疏水袋附近的取代基,该口袋估计是亲和力的增加。

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