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首页> 外文期刊>Journal of Biomechanics >Estimation of the binding force of the collagen molecule-decorin core protein complex in collagen fibril
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Estimation of the binding force of the collagen molecule-decorin core protein complex in collagen fibril

机译:胶原蛋白-decorin核心蛋白复合物在胶原纤维中的结合力的估计

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Decorin belongs to the small leucine proteoglycans family and is considered to play an important role in extracellular matrix organization. Experimental studies suggest that decorin is required for the assembly of collagen fibrils, as well as for the development of proper tissue mechanical properties. In tendons, decorins tie adjoining collagen fibrils together and probably guarantee the mechanical coupling of fibrils. The decorin molecule consists of one core protein and one glycosaminoglycan chain covalently linked to a serine residue of the core protein. Several studies have indicated that each core protein binds to the surface of collagen fibrils every 67 nm, by interacting non-covalently to one collagen molecule of the fibril surface, while the decorin glycosaminoglycans extend from the core protein to connect to another decorin core protein laying on adjacent fibril surface. The present paper investigates the complex composed of one decorin core protein and one collagen molecule in order to obtain their binding force. For this purpose, molecular models of collagen molecules type I and decorin core protein were developed and their interaction energies were evaluated by means of the molecular mechanics approach. Results show that the complex is characterized by a maximum binding force of about 12.4 x 10(3) nN and a binding stiffness of 8.33 x 10(-8) Nm; the attained binding force is greater than the glycosaminoglycan chain's ultimate strength, thus indicating that overloads are likely to damage the collagen fibre's mechanical integrity by disrupting the glycosaminoglycan chains rather than by causing decorin core protein detachment from the collagen fibril. (C) 2004 Elsevier Ltd. All rights reserved.
机译:Decorin属于亮氨酸蛋白聚糖小家族,被认为在细胞外基质组织中起重要作用。实验研究表明,decorin是组装胶原蛋白原纤维以及发展适当的组织机械性能所必需的。在肌腱中,核心蛋白聚糖将相邻的胶原蛋白原纤维结合在一起,并可能保证原纤维的机械结合。核心蛋白聚糖分子由一个核心蛋白和一个与核心蛋白丝氨酸残基共价连接的糖胺聚糖链组成。几项研究表明,每种核心蛋白每67 nm都通过与原纤维表面的一个胶原分子非共价相互作用而与胶原蛋白原纤维的表面结合,而核心蛋白聚糖糖胺聚糖从核心蛋白延伸而连接到另一核心蛋白聚糖核心蛋白上在相邻的原纤维表面上。本文研究了由一种核心蛋白聚糖核心蛋白和一种胶原分子组成的复合物,以获得它们的结合力。为此,建立了I型胶原分子和核心蛋白聚糖核心蛋白的分子模型,并通过分子力学方法评估了它们的相互作用能。结果表明,该复合物的最大结合力约为12.4 x 10(3)nN,结合刚度为8.33 x 10(-8)N / nm。所获得的结合力大于糖胺聚糖链的极限强度,因此表明过载可能通过破坏糖胺聚糖链而不是通过导致核心蛋白聚糖核心蛋白从胶原纤维上脱离来破坏胶原纤维的机械完整性。 (C)2004 Elsevier Ltd.保留所有权利。

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