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层粘连蛋白α1链G结构域中的Syndecan结合位点。

Syndecan binding sites in the laminin alpha1 chain G domain.

作者信息

Suzuki Nobuharu, Ichikawa Naoki, Kasai Shingo, Yamada Masanori, Nishi Norio, Morioka Hiroshi, Yamashita Hironobu, Kitagawa Yasuo, Utani Atsushi, Hoffman Matthew P, Nomizu Motoyoshi

机构信息

Graduate School of Environmental Earth Science, Hokkaido University, Sapporo 060-0810, Japan.

出版信息

Biochemistry. 2003 Nov 4;42(43):12625-33. doi: 10.1021/bi030014s.

Abstract

The laminin alpha1 chain G domain has multiple biological activities. Previously, we identified cell binding sequences in the laminin alpha1 chain G domain by screening 113 synthetic peptide-polystyrene beads for cell attachment activity. Here, we have used a recombinant protein of the laminin alpha1 G domain (rec-alpha1G) and a large set of synthetic peptides to further identify and characterize heparin, cell, and syndecan-4 binding sites in the laminin alpha1 chain G domain. The rec-alpha1G protein promoted both cell attachment and heparin binding (K(D) = 19 nM). Cell attachment to the rec-alpha1G protein was inhibited 60% by heparin and 30% by EDTA. The heparin binding sites were identified by competing heparin binding to the rec-alpha1G protein with 110 synthetic peptides in solution. Only two peptides, AG73 (IC(50) = 147 microM) and AG75 (IC(50) = 206 microM), inhibited heparin binding to rec-alpha1G. When the peptides were compared in a solid-phase heparin binding assay, AG73 showed more heparin binding than AG75. AG73 also inhibited fibroblast attachment to the rec-alpha1G protein, but AG75 did not. Cell attachment to the peptides was studied using peptide-coated plates and peptide-conjugated sepharose beads. AG73 promoted cell attachment in both assays, but AG75 only showed cell attachment activity in the bead assay. Additionally, AG73, but not AG75, inhibited branching morphogenesis of mouse submandibular glands in organ culture. Furthermore, the rec-alpha1G protein bound syndecan-4, and both AG73 and AG75 inhibited this binding. These results suggest that the AG73 and AG75 sites are important for heparin and syndecan-4 binding in the laminin alpha1 chain G domain. These sites may play a critical role in the diverse biological activities involving heparin and syndecan-4 binding.

摘要

层粘连蛋白α1链G结构域具有多种生物学活性。此前,我们通过筛选113个具有细胞附着活性的合成肽 - 聚苯乙烯珠,鉴定了层粘连蛋白α1链G结构域中的细胞结合序列。在此,我们使用层粘连蛋白α1 G结构域的重组蛋白(rec-α1G)和大量合成肽,进一步鉴定和表征层粘连蛋白α1链G结构域中的肝素、细胞和syndecan - 4结合位点。rec-α1G蛋白促进细胞附着和肝素结合(解离常数K(D)=19 nM)。肝素可抑制60%的细胞与rec-α1G蛋白的附着,EDTA可抑制30%。通过在溶液中用110个合成肽与rec-α1G蛋白竞争肝素结合来鉴定肝素结合位点。只有两个肽,AG73(半数抑制浓度IC(50)=147 microM)和AG75(IC(50)=206 microM),抑制肝素与rec-α1G的结合。当在固相肝素结合试验中比较这些肽时,AG73显示出比AG75更多的肝素结合。AG73也抑制成纤维细胞与rec-α1G蛋白的附着,但AG75没有。使用肽包被的平板和肽偶联的琼脂糖珠研究细胞与肽的附着。在两种试验中AG73都促进细胞附着,但AG75仅在珠试验中显示细胞附着活性。此外,AG73而非AG75抑制器官培养中小鼠下颌下腺的分支形态发生。此外,rec-α1G蛋白结合syndecan - 4,AG73和AG75都抑制这种结合。这些结果表明,AG73和AG75位点对于层粘连蛋白α1链G结构域中的肝素和syndecan - 4结合很重要。这些位点可能在涉及肝素和syndecan - 4结合的多种生物学活性中起关键作用。

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