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从皮肤中分离和表征 I 型胶原交联:高分辨率 NMR 揭示羟赖氨酸正亮氨酸交联的非对映异构体。

Isolation and characterization of collagen type I crosslink from skin: high-resolution NMR reveals diastereomers of hydroxylysinonorleucine crosslink.

机构信息

NZ Leather and Shoe Research Association (LASRA®), Palmerston North, New Zealand.

Institute of Fundamental Sciences, Massey University, Palmerston North, New Zealand.

出版信息

Amino Acids. 2019 Apr;51(4):705-715. doi: 10.1007/s00726-019-02708-3. Epub 2019 Feb 20.

Abstract

Skin is made up of mainly collagen type I and its structure is stabilised by the formation of covalent immature and mature crosslinks. In this study, collagen immature crosslink hydroxylysinonorleucine (HLNL) was isolated from bovine skin in high purity using two sequential purification steps. These consisted of preparative fibrous cellulose and size exclusion chromatography. The purified crosslink was then analysed using tandem mass spectrometry and high-resolution nuclear magnetic resonance (NMR) spectroscopy. The mass of singly and doubly charged ions of HLNL was 292.1865 and 146.5970 m/z and their optimised fragmentation energy was 17 keV and 5 keV, respectively. The C NMR of HLNL showed a doubled-up peak at 67.84 and 67.91 ppm which corroborated a diastereomeric form of collagen immature crosslink HLNL and both are chiroptically indistinguishable. The chemical structure was fully resolved using H, C and DEPT-135 high-resolution NMR spectroscopy and compared with other previous studies. We also obtained for the first time the 2D NMR spectra COSY and HSQC of HLNL. We therefore suggested that collagen organization into specific fibrils' orientation may be affected by the different configuration of these diastereomers of HLNL.

摘要

皮肤主要由 I 型胶原蛋白组成,其结构通过形成共价不成熟和成熟的交联来稳定。在这项研究中,使用两步连续的纯化步骤从牛皮肤中高纯度分离胶原蛋白不成熟交联羟赖氨酸异亮氨酸(HLNL)。这些步骤包括制备性纤维素纤维和尺寸排阻色谱。然后使用串联质谱和高分辨率核磁共振(NMR)光谱分析纯化的交联。HLNL 的单电荷和双电荷离子的质量分别为 292.1865 和 146.5970 m/z,其最佳的碎片能量分别为 17 keV 和 5 keV。HLNL 的 13 C NMR 显示 67.84 和 67.91 ppm 处的双峰,这证实了胶原蛋白不成熟交联 HLNL 的非对映异构体形式,并且两者在旋光上无法区分。使用 H、C 和 DEPT-135 高分辨率 NMR 光谱完全解析了化学结构,并与其他先前的研究进行了比较。我们还首次获得了 HLNL 的二维 NMR 谱 COSY 和 HSQC。因此,我们认为这些 HLNL 的非对映异构体的不同构型可能会影响胶原蛋白组织成特定原纤维的取向。

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