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

被引:117
|
作者
Herchenhan, Andreas [1 ,2 ]
Uhlenbrock, Franziska [3 ]
Eliasson, Pernilla [1 ,2 ]
Weis, MaryAnn [4 ]
Eyre, David [4 ]
Kadler, Karl E. [5 ]
Magnusson, S. Peter [1 ,2 ]
Kjaer, Michael [1 ,2 ]
机构
[1] Univ Copenhagen, Inst Sports Med Copenhagen, DK-2400 Copenhagen, Denmark
[2] Univ Copenhagen, Ctr Hlth Ageing, DK-2400 Copenhagen, Denmark
[3] Univ Copenhagen, Fac Hlth & Med Sci, Sect Expt Anim Models, Immunol Lab, DK-1870 Frederiksberg, Denmark
[4] Univ Washington, Dept Orthopaed & Sports Med, Seattle, WA 98195 USA
[5] Univ Manchester, Wellcome Trust Ctr Cell Matrix Res, Fac Life Sci, Manchester M13 9PT, Lancs, England
基金
英国惠康基金; 美国国家卫生研究院;
关键词
collagen; electron microscopy (EM); fibril; lysyl oxidase; tendon; Ehlers-Danlos Syndrome; collagen cross-linking; tendon construct; -aminoproprionitrile (BAPN); EHLERS-DANLOS-SYNDROME; CROSS-LINKING; BETA-AMINOPROPIONITRILE; V COLLAGEN; I COLLAGEN; TENASCIN-X; 3-DIMENSIONAL ORGANIZATION; EXPERIMENTAL LATHYRISM; ELECTRON-MICROSCOPY; CORE PROTEIN;
D O I
10.1074/jbc.M115.641670
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Background: Lysyl oxidase catalyzes collagen cross-link formation, which is essential for mechanically strong collagen fibrils. Results: LOX inhibition stops early mechanical development of tendon constructs and leads to irregularly shaped collagen fibrils. Conclusion: Collagen cross-linking is essential for successful fibrillogenesis and regulates fibril shape. Significance: LOX activity is required in the control of collagen fibril architecture by a mechanism that remains to be explained. 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 -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.
引用
收藏
页码:16440 / 16450
页数:11
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