Faculty of Advanced Life Science, Hokkaido University Graduate School of Life Science, Sapporo 001-0021, Japan.
J Biol Chem. 2010 Sep 3;285(36):27673-85. doi: 10.1074/jbc.M110.118703. Epub 2010 Jun 28.
Endogenous pleiotrophin and hepatocyte growth factor (HGF) mediate the neurite outgrowth-promoting activity of chondroitin sulfate (CS)/dermatan sulfate (DS) hybrid chains isolated from embryonic pig brain. CS/DS hybrid chains isolated from shark skin have a different disaccharide composition, but also display these activities. In this study, pleiotrophin- and HGF-binding domains in shark skin CS/DS were investigated. A high affinity CS/DS fraction was isolated using a pleiotrophin-immobilized column. It showed marked neurite outgrowth-promoting activity and strong inhibitory activity against the binding of pleiotrophin to immobilized CS/DS chains from embryonic pig brain. The inhibitory activity was abolished by chondroitinase ABC or B, and partially reduced by chondroitinase AC-I. A pentasulfated hexasaccharide with a novel structure was isolated from the chondroitinase AC-I digest using pleiotrophin affinity and anion exchange chromatographies. It displayed a potent inhibitory effect on the binding of HGF to immobilized shark skin CS/DS chains, suggesting that the pleiotrophin- and HGF-binding domains at least partially overlap in the CS/DS chains involved in the neuritogenic activity. Computational chemistry using molecular modeling and calculations of the electrostatic potential of the hexasaccharide and two pleiotrophin-binding octasaccharides previously isolated from CS/DS hybrid chains of embryonic pig brain identified an electronegative zone potentially involved in the molecular recognition of the oligosaccharides by pleiotrophin. Homology modeling of pleiotrophin based on a related midkine protein structure predicted the binding pocket of pleiotrophin for the oligosaccharides and provided new insights into the molecular mechanism of the interactions between the oligosaccharides and pleiotrophin.
内源性双调蛋白和肝细胞生长因子 (HGF) 介导了从胚胎猪脑中分离的硫酸软骨素 (CS)/硫酸皮肤素 (DS) 杂合链的促神经突生长活性。从鲨鱼皮中分离的 CS/DS 杂合链具有不同的二糖组成,但也显示出这些活性。在这项研究中,研究了鲨鱼皮 CS/DS 中的双调蛋白和 HGF 结合域。使用双调蛋白固定化柱分离出高亲和力的 CS/DS 级分。它显示出明显的促神经突生长活性和对固定化 CS/DS 链与胚胎猪脑来源的双调蛋白结合的强烈抑制活性。抑制活性被软骨素酶 ABC 或 B 消除,部分被软骨素酶 AC-I 降低。使用双调蛋白亲和和阴离子交换色谱法从软骨素酶 AC-I 消化产物中分离出一种具有新型结构的五硫酸六糖。它显示出对 HGF 与固定化鲨鱼皮 CS/DS 链结合的强烈抑制作用,表明在涉及神经突生成活性的 CS/DS 链中,双调蛋白和 HGF 结合域至少部分重叠。使用分子建模和计算静电势的计算化学对六糖和先前从胚胎猪脑 CS/DS 杂合链中分离的两种双调蛋白结合八糖进行了研究,确定了一个可能涉及到这些寡糖与双调蛋白的分子识别的电负性区域。基于相关中期因子蛋白结构的双调蛋白同源建模预测了双调蛋白与寡糖的结合口袋,并为寡糖与双调蛋白之间的相互作用的分子机制提供了新的见解。