Department of Chemistry, National Tsing Hua University, Hsinchu, Taiwan 30013, ROC.
Langmuir. 2012 Feb 14;28(6):3194-9. doi: 10.1021/la204351w. Epub 2012 Feb 2.
Collagen is an important and widely used biomaterial and therapeutic. The construction of large-scale collagen structures via the self-assembly of small collagen-related peptides has been extensively studied in the past decade. Here, we report a highly effective and simple means to assemble small synthetic collagen-related peptides into various higher-order structures by utilizing metal-histidine coordination. In this work, two short collagen-related peptides in which histidine residues were incorporated as metal binding sites were designed and chemically synthesized: HG(PPG)(9)GH (X9) and HG(PPG)(4)(PHG)(PPG)(4)GH (PHG). Circular dichroism measurements indicated that these two peptides form only marginally stable collagen triple helices but that their stability can be increased upon the addition of metal ions. Dynamic light scattering analyses, turbidity measurements, TEM, and SEM results demonstrated the metal ion-dependent self-assembly of X9 and PHG into supramolecular structures ranging from various nanofibrils to microscale spherical, laminated, and granulated assemblies. The topology and size of these higher-order structures depends both on the metal ion identity and the location of the binding sites. Most intriguingly, the assembled fibrils show similar D-periodicity to that of natural collagen. Our results demonstrate that metal-histidine coordination can serve as an effective force to induce the self-assembly of unstable collagen-related peptides into higher-order structures.
胶原蛋白是一种重要且广泛应用的生物材料和治疗剂。在过去十年中,通过小分子胶原蛋白相关肽的自组装构建大规模胶原蛋白结构得到了广泛研究。在这里,我们报告了一种通过金属-组氨酸配位有效地将小分子合成胶原蛋白相关肽组装成各种高级结构的方法。在这项工作中,设计并化学合成了两个短的胶原蛋白相关肽,其中组氨酸残基被用作金属结合位点:HG(PPG)(9)GH (X9)和 HG(PPG)(4)(PHG)(PPG)(4)GH (PHG)。圆二色性测量表明,这两种肽仅形成略有稳定的胶原蛋白三螺旋,但在添加金属离子后其稳定性可以增加。动态光散射分析、浊度测量、TEM 和 SEM 结果表明,X9 和 PHG 在金属离子的作用下自组装成从各种纳米纤维到微尺度球形、层状和粒状组装体的超分子结构。这些高级结构的拓扑结构和大小既取决于金属离子的种类,也取决于结合位点的位置。最有趣的是,组装的纤维显示出与天然胶原蛋白相似的 D-周期性。我们的结果表明,金属-组氨酸配位可以作为一种有效的力,诱导不稳定的胶原蛋白相关肽自组装成高级结构。