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首页> 外文期刊>Biomacromolecules >Self-Assembly of a Model Peptide Incorporating a Hexa-Histidine Sequence Attached to an Oligo-Alanine Sequence, and Binding to Gold NTA/Nickel Nanoparticles
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Self-Assembly of a Model Peptide Incorporating a Hexa-Histidine Sequence Attached to an Oligo-Alanine Sequence, and Binding to Gold NTA/Nickel Nanoparticles

机译:模型肽结合到寡丙氨酸序列,并结合到金NTA /镍纳米颗粒上的六组氨酸序列的模型的自组装。

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摘要

Amyloid fibrils are formed by a model surfactant-like peptide (Ala)_(10)-(His)6 containing a hexa- histidine tag. This peptide undergoes a remarkable two-step self-assembly process with two distinct critical aggregation concentrations (cac's), probed by fluorescence techniques. A micromolar range cac is ascribed to the formation of prefibrillar structures, whereas a millimolar range cac is associated with the formation of well-defined but more compact fibrils. We examine the labeling of these model tagged amyloid fibrils using Ni-NTA functionalized gold nanoparticles (Nanogold). Successful labeling is demonstrated via electron microscopy imaging. The specificity of tagging does not disrupt the β-sheet structure of the peptide fibrils. Binding of fibrils and Nanogold is found to influence the circular dichroism associated with the gold nanoparticle plasmon absorption band. These results highlight a new approach to the fabricitipn of functipnahzed amyloid fibrils and the creation of peptideanoparticle hybrid materials.
机译:淀粉样蛋白原纤维是由含有六组氨酸标签的模型表面活性剂样肽(Ala)_(10)-(His)6形成的。该肽经历了显着的两步自组装过程,具有两个不同的临界聚集浓度(cac),通过荧光技术进行探测。微摩尔范围的cac归因于前原纤维结构的形成,而毫摩尔范围的cac与定义明确但较致密的原纤维的形成有关。我们使用Ni-NTA功能化的金纳米颗粒(Nanogold)检查了这些模型标记的淀粉样蛋白原纤维的标记。通过电子显微镜成像证明成功的标记。标签的特异性不破坏肽原纤维的β-折叠结构。发现原纤维和纳米金的结合影响与金纳米粒子等离子体激元吸收带相关的圆形二色性。这些结果突显了一种新的功能化淀粉样淀粉样原纤维的制备方法和肽/纳米颗粒杂化材料的创建。

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