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硫酸软骨素与多效生长因子/肝素结合生长相关分子的结合受链长和过度硫酸化结构的调节。

The binding of chondroitin sulfate to pleiotrophin/heparin-binding growth-associated molecule is regulated by chain length and oversulfated structures.

作者信息

Maeda Nobuaki, Fukazawa Nobuna, Hata Toshihiro

机构信息

Department of Developmental Neuroscience, Tokyo Metropolitan Institute for Neuroscience, 2-6 Musashidai, Fuchu, Tokyo 183-8526, Japan.

出版信息

J Biol Chem. 2006 Feb 24;281(8):4894-902. doi: 10.1074/jbc.M507750200. Epub 2005 Dec 22.

Abstract

Pleiotrophin is an 18-kDa heparin-binding growth factor, which uses chondroitin sulfate (CS) proteoglycan, PTPzeta as a receptor. It has been suggested that the D-type structure (GlcA(2S)beta1-3GalNAc(6S)) in CS contributes to the high affinity binding between PTPzeta and pleiotrophin. Here, we analyzed the interaction of shark cartilage CS-D with pleiotrophin using a surface plasmon resonance biosensor to reveal the importance of D-type structure. CS-D was partially digested with chondroitinase ABC, and fractionated using a Superdex 75pg column. The > or =18-mer CS fractions showed significant binding to pleiotrophin, and the longer fractions had stronger affinity for pleiotrophin than the shorter ones. The approximately 46-mer CS fraction bound to densely immobilized pleiotrophin with high affinity (K(D) = approximately 30 nM), and the binding reactions fitted the bivalent analyte model. However, when the density of the immobilized pleiotrophin was lowered, the strength of affinity remarkably decreased (K(D) = approximately 2.5 microM), and the reactions no longer fitted the model and were considered to be monovalent binding. The 20 approximately 24-mer fractions showed low affinity binding to densely immobilized pleiotrophin (K(D) = 3 approximately 20 microM), which seemed to be monovalent. When approximately 22-mer CS oligosaccharides were fractionated by strong anion exchange HPLC, each fraction differed in affinity for pleiotrophin (K(D) = 0.36 approximately >10 microM), and the affinity correlated with the amounts of D- and E- (GlcAbeta1-3GalNAc(4S,6S)) type oversulfated structures. These results suggest that the binding of pleiotrophin to CS is regulated by multivalency with CS approximately 20 mer as a unit and by the amounts of oversulfated structures.

摘要

多效生长因子是一种18 kDa的肝素结合生长因子,它以硫酸软骨素(CS)蛋白聚糖PTPζ作为受体。有人提出,CS中的D型结构(GlcA(2S)β1-3GalNAc(6S))有助于PTPζ与多效生长因子之间的高亲和力结合。在此,我们使用表面等离子体共振生物传感器分析了鲨鱼软骨CS-D与多效生长因子的相互作用,以揭示D型结构的重要性。CS-D用软骨素酶ABC进行部分消化,并用Superdex 75pg柱进行分级分离。≥18聚体的CS级分显示出与多效生长因子有显著结合,且较长的级分对多效生长因子的亲和力比较短的级分更强。约46聚体的CS级分以高亲和力(K(D)≈30 nM)结合到高密度固定的多效生长因子上,且结合反应符合二价分析物模型。然而,当固定的多效生长因子密度降低时,亲和力强度显著下降(K(D)≈2.5 μM),且反应不再符合该模型,被认为是单价结合。20至24聚体的级分显示出与高密度固定的多效生长因子有低亲和力结合(K(D)=3至20 μM),这似乎是单价的。当通过强阴离子交换HPLC对约22聚体的CS寡糖进行分级分离时,每个级分对多效生长因子的亲和力不同(K(D)=0.36至>10 μM),且亲和力与D型和E型(GlcAβ1-3GalNAc(4S,6S))过硫酸化结构的量相关。这些结果表明,多效生长因子与CS的结合受以约20聚体的CS为单位的多价性以及过硫酸化结构量的调节。

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