首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Solution Structure of an ABC Collagen Heterotrimer Reveals a Single-register Helix Stabilized by Electrostatic Interactions
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Solution Structure of an ABC Collagen Heterotrimer Reveals a Single-register Helix Stabilized by Electrostatic Interactions

机译:ABC胶原异三聚体的溶液结构揭示了通过静电相互作用稳定的单寄存器螺旋。

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摘要

Collagen, known for its structural role in tissues and also for its participation in the regulation of homeostatic and pathological processes in mammals, is assembled from triple helices that can be either homotrimers or heterotrimers. High resolution structural information for natural collagens has been difficult to obtain because of their size and the heterogeneity of their native environment. For this reason, peptides that self-assemble into collagen-like triple helices are used to gain insight into the structure, stability, and biochemistry of this important protein family. Although many of the most common collagens in humans are heterotrimers, almost all studies of collagen helices have been on homotrimers. Here we report the first structure of a collagen heterotrimer. Our structure, obtained by solution NMR, highlights the role of electrostatic interactions as stabilizing factors within the triple helical folding motif. This addresses an issue that has been actively researched because of the predominance of charged residues in the collagen family. We also find that it is possible to selectively form a collagen heterotrimer with a well defined composition and register of the peptide chains within the helix, based on information encoded solely in the collagenous domain. Globular domains are implicated in determining the composition of several collagen types, but it is unclear what their role in controlling register may be. We show that is possible to design peptides that not only selectively choose a composition but also a specific register without the assistance of other protein constructs. This mechanism may be used in nature as well.
机译:胶原蛋白因其在组织中的结构作用以及参与哺乳动物体内稳态和病理过程的调节而闻名,它是由三螺旋组成的,这些螺旋可以是同三聚体或异源三聚体。由于天然胶原蛋白的大小和天然环境的异质性,很难获得高分辨率的胶原蛋白结构信息。因此,可使用自组装成胶原样三重螺旋的肽来深入了解这一重要蛋白质家族的结构,稳定性和生物化学。尽管人类中许多最常见的胶原蛋白是异源三聚体,但几乎所有有关胶原螺旋的研究都针对同三聚体。在这里,我们报告胶原异源三聚体的第一个结构。通过溶液NMR获得的我们的结构突出了静电相互作用作为三重螺旋折叠基序内稳定因子的作用。这解决了由于胶原家族中带电残基占优势而被积极研究的问题。我们还发现,基于仅在胶原结构域中编码的信息,可以选择性地形成具有明确定义的组成和螺旋内肽链配准的胶原异源三聚体。球状结构域与确定几种胶原类型的组成有关,但目前尚不清楚它们在控制配准中的作用。我们表明,有可能设计出不仅可以选择性地选择一种成分,而且还可以在不借助其他蛋白质构建体的情况下对特定的配体进行设计的肽。该机制也可以自然使用。

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