Götte Martin, Spillmann Dorothe, Yip George W, Versteeg Elly, Echtermeyer Frank G, van Kuppevelt Toin H, Kiesel Ludwig
Department of Gynecology and Obstetrics, University of Münster, Medical Center, Albert-Schweitzer-Str. 33, D-48149 Münster, Germany.
Hum Mol Genet. 2008 Apr 1;17(7):996-1009. doi: 10.1093/hmg/ddm372. Epub 2007 Dec 24.
Reduced activity of beta4-galactosyltransferase 7 (beta4GalT-7), an enzyme involved in synthesizing the glycosaminoglycan linkage region of proteoglycans, is associated with the progeroid form of Ehlers-Danlos syndrome (EDS). In the invertebrates Drosophila melanogaster and Caenorhabditis elegans, mutations in beta4GalT-7 affect biosynthesis of heparan sulfate (HS), a modulator of several biological processes relevant to wound repair. We have analyzed structural alterations of HS and their functional consequences in human beta4GalT-7 Arg270Cys mutant EDS and control fibroblasts. HS disaccharide analysis by reversed phase ion-pairing chromatography revealed a reduced sulfation degree of HS paralleled by altered immunostaining patterns for the phage-display anti-HS antibodies HS4E4 and RB4EA12 in beta4GalT-7 mutant fibroblasts. Real-time PCR-analysis of 44 genes involved in glycosaminoglycan biosynthesis indicated that the structural alterations in HS were not caused by differential regulation at the transcriptional level. Scratch wound closure was delayed in beta4GalT-7-deficient cells, which could be mimicked by enzymatic removal of HS in control cells. siRNA-mediated knockdown of beta4GalT-7 expression induced morphological changes in control fibroblasts which suggested altered cell-matrix interactions. Adhesion of beta4GalT-7 deficient cells to fibronectin was increased while actin stress fiber formation was impaired relative to control cells. Also collagen gel contraction was delayed in the beta4GalT-7 mutants which showed a reduced formation of pseudopodia and filopodia, less efficient penetration of the collagen gels and a diminished formation of collagen suprastructures. Our study suggests an HS-dependent basic mechanism behind the altered wound repair phenotype of beta4GalT-7-deficient EDS patients.
β4-半乳糖基转移酶7(β4GalT-7)参与蛋白聚糖糖胺聚糖连接区的合成,其活性降低与早老型埃勒斯-当洛综合征(EDS)相关。在无脊椎动物果蝇和秀丽隐杆线虫中,β4GalT-7的突变会影响硫酸乙酰肝素(HS)的生物合成,HS是与伤口修复相关的几种生物学过程的调节剂。我们分析了人类β4GalT-7 Arg270Cys突变型EDS和成纤维细胞对照中HS的结构改变及其功能后果。通过反相离子对色谱法进行的HS二糖分析显示,β4GalT-7突变型成纤维细胞中HS的硫酸化程度降低,同时噬菌体展示抗HS抗体HS4E4和RB4EA12的免疫染色模式也发生了改变。对44个参与糖胺聚糖生物合成的基因进行实时PCR分析表明,HS的结构改变不是由转录水平的差异调节引起的。β4GalT-7缺陷细胞的划痕伤口愈合延迟,这可以通过酶促去除对照细胞中的HS来模拟。siRNA介导的β4GalT-7表达敲低诱导对照成纤维细胞发生形态变化,这表明细胞-基质相互作用发生了改变。相对于对照细胞,β4GalT-7缺陷细胞与纤连蛋白的粘附增加,而肌动蛋白应力纤维形成受损。此外,β4GalT-7突变体中的胶原凝胶收缩也延迟,表现为伪足和丝状伪足形成减少、胶原凝胶穿透效率降低以及胶原超结构形成减少。我们的研究表明,β4GalT-7缺陷型EDS患者伤口修复表型改变背后存在一种依赖HS的基本机制。