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赖氨酰氧化酶活性是肌腱细胞有序胶原纤维形成所必需的。

Lysyl Oxidase Activity Is Required for Ordered Collagen Fibrillogenesis by Tendon Cells.

作者信息

Herchenhan Andreas, Uhlenbrock Franziska, Eliasson Pernilla, Weis MaryAnn, Eyre David, Kadler Karl E, Magnusson S Peter, Kjaer Michael

机构信息

From the Institute of Sports Medicine Copenhagen and Center for Healthy Ageing, University of Copenhagen, DK-2400 Copenhagen, Denmark,

Section for Experimental Animal Models, Laboratory of Immunology, Faculty of Health and Medical Sciences, University of Copenhagen, DK-1870 Frederiksberg, Denmark.

出版信息

J Biol Chem. 2015 Jun 26;290(26):16440-50. doi: 10.1074/jbc.M115.641670. Epub 2015 May 15.

Abstract

Lysyl oxidases (LOXs) are a family of copper-dependent oxido-deaminases that can modify the side chain of lysyl residues in collagen and elastin, thereby leading to the spontaneous formation of non-reducible aldehyde-derived interpolypeptide chain cross-links. The consequences of LOX inhibition in producing lathyrism are well documented, but the consequences on collagen fibril formation are less clear. Here we used β-aminoproprionitrile (BAPN) to inhibit LOX in tendon-like constructs (prepared from human tenocytes), which are an experimental model of cell-mediated collagen fibril formation. The improvement in structure and strength seen with time in control constructs was absent in constructs treated with BAPN. As expected, BAPN inhibited the formation of aldimine-derived cross-links in collagen, and the constructs were mechanically weak. However, an unexpected finding was that BAPN treatment led to structurally abnormal collagen fibrils with irregular profiles and widely dispersed diameters. Of special interest, the abnormal fibril profiles resembled those seen in some Ehlers-Danlos Syndrome phenotypes. Importantly, the total collagen content developed normally, and there was no difference in COL1A1 gene expression. Collagen type V, decorin, fibromodulin, and tenascin-X proteins were unaffected by the cross-link inhibition, suggesting that LOX regulates fibrillogenesis independently of these molecules. Collectively, the data show the importance of LOX for the mechanical development of early collagenous tissues and that LOX is essential for correct collagen fibril shape formation.

摘要

赖氨酰氧化酶(LOXs)是一类依赖铜的氧化脱氨酶,可修饰胶原蛋白和弹性蛋白中赖氨酰残基的侧链,从而导致不可还原的醛衍生的多肽链间交联的自发形成。LOX抑制导致山黧豆中毒的后果已有充分记录,但对胶原纤维形成的影响尚不清楚。在这里,我们使用β-氨基丙腈(BAPN)抑制肌腱样构建体(由人肌腱细胞制备)中的LOX,该构建体是细胞介导的胶原纤维形成的实验模型。用BAPN处理的构建体中没有观察到对照构建体随时间出现的结构和强度改善。正如预期的那样,BAPN抑制了胶原蛋白中醛亚胺衍生交联的形成,并且构建体的机械性能较弱。然而,一个意外的发现是,BAPN处理导致胶原纤维结构异常,轮廓不规则且直径分布广泛。特别值得注意的是,异常的纤维轮廓类似于某些埃勒斯-当洛综合征(Ehlers-Danlos Syndrome)表型中所见的轮廓。重要的是,总胶原蛋白含量正常发育,COL1A1基因表达没有差异。V型胶原蛋白、核心蛋白聚糖、纤调蛋白和腱生蛋白-X蛋白不受交联抑制的影响,这表明LOX独立于这些分子调节纤维形成。总体而言,这些数据表明LOX对早期胶原组织的机械发育很重要,并且LOX对正确的胶原纤维形状形成至关重要。

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