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Crystal structure of the collagen triple helix model (Pro-Pro-Gly)103

机译:胶原三螺旋模型(Pro-Pro-Gly)10 3的晶体结构

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摘要

The first report of the full-length structure of the collagen-like polypeptide [(Pro-Pro-Gly)10]3 is given. This structure was obtained from crystals grown in a microgravity environment, which diffracted up to 1.3 Å, using synchrotron radiation. The final model, which was refined to an Rfactor of 0.18, is the highest-resolution description of a collagen triple helix reported to date. This structure provides clues regarding a series of aspects related to collagen triple helix structure and assembly. The strict dependence of proline puckering on the position inside the Pro-Pro-Gly triplets and the correlation between backbone and side chain dihedral angles support the propensity-based mechanism of triple helix stabilization/destabilization induced by hydroxyproline. Furthermore, the analysis of [(Pro-Pro-Gly)10]3 packing, which is governed by electrostatic interactions, suggests that charges may act as locking features in the axial organization of triple helices in the collagen fibrils.
机译:首次报道了胶原样多肽[(Pro-Pro-Gly)10] 3的全长结构。这种结构是从微重力环境下生长的晶体中获得的,该晶体使用同步加速器辐射衍射至1.3Å。最终模型被精炼到Rfactor为0.18,是迄今为止报道的最高分辨率的胶原三螺旋结构描述。这种结构提供了与胶原三螺旋结构和组装有关的一系列方面的线索。脯氨酸折叠对Pro-Pro-Gly三胞胎内部位置的严格依赖性以及骨架和侧链二面角之间的相关性支持了由羟脯氨酸诱导的三螺旋稳定/去稳定的基于倾向的机制。此外,由静电相互作用控制的[(Pro-Pro-Gly)10] 3堆积的分析表明,电荷可能充当胶原原纤维中三重螺旋的轴向组织中的锁定特征。

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