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水在骨基质内天然胶原蛋白组装中的主要作用。

Predominant role of water in native collagen assembly inside the bone matrix.

作者信息

Rai Ratan Kumar, Singh Chandan, Sinha Neeraj

机构信息

Centre of Biomedical Research , SGPGIMS Campus, Raibarelly Road, Lucknow 226014, India.

出版信息

J Phys Chem B. 2015 Jan 8;119(1):201-11. doi: 10.1021/jp511288g. Epub 2014 Dec 22.

Abstract

Bone is one of the most intriguing biomaterials found in nature consisting of bundles of collagen helixes, hydroxyapatite, and water, forming an exceptionally tough, yet lightweight material. We present here an experimental tool to map water-dependent subtle changes in triple helical assembly of collagen protein in its absolute native environment. Collagen being the most abundant animal protein has been subject of several structural studies in last few decades, mostly on an extracted, overexpressed, and synthesized form of collagen protein. Our method is based on a (1)H detected solid-state nuclear magnetic resonance (ssNMR) experiment performed on native collagen protein inside intact bone matrix. Recent development in (1)H homonuclear decoupling sequences has made it possible to observe specific atomic resolution in a large complex system. The method consists of observing a natural-abundance two-dimensional (2D) (1)H/(13)C heteronuclear correlation (HETCOR) and(1)H double quantum-single quantum (DQ-SQ) correlation ssNMR experiment. The 2D NMR experiment maps three-dimensional assembly of native collagen protein and shows that extracted form of collagen protein is significantly different from protein in the native state. The method also captures native collagen subtle changes (of the order of ∼1.0 Å) due to dehydration and H/D exchange, giving an experimental tool to map small changes. The method has the potential to be of wide applicability to other collagen containing biomaterials.

摘要

骨骼是自然界中最引人入胜的生物材料之一,它由胶原蛋白螺旋束、羟基磷灰石和水组成,形成了一种异常坚韧但重量轻的材料。我们在此展示一种实验工具,用于在胶原蛋白的绝对天然环境中绘制其三重螺旋组装中与水相关的细微变化。胶原蛋白是动物体内最丰富的蛋白质,在过去几十年中一直是多项结构研究的对象,这些研究大多针对提取、过度表达和合成形式的胶原蛋白。我们的方法基于对完整骨基质内天然胶原蛋白进行的(1)H检测固态核磁共振(ssNMR)实验。(1)H同核去耦序列的最新进展使得在大型复杂系统中观察特定原子分辨率成为可能。该方法包括观察天然丰度二维(2D)(1)H/(13)C异核相关(HETCOR)和(1)H双量子-单量子(DQ-SQ)相关ssNMR实验。二维核磁共振实验绘制了天然胶原蛋白的三维组装图,并表明提取形式的胶原蛋白与天然状态的蛋白质有显著差异。该方法还捕捉到了由于脱水和H/D交换导致的天然胶原蛋白的细微变化(约1.0 Å量级),提供了一种绘制微小变化的实验工具。该方法有可能广泛应用于其他含胶原蛋白的生物材料。

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