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Amyloid-like Fibrils in Elastin-Related Polypeptides;Structural Characterization and Elastic Properties

机译:弹性蛋白相关多肽中的淀粉样蛋白原纤维;结构表征和弹性性质

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摘要

We report on the structural characterization of amyloid-like fibrils,self-assembled from synthetic polypentapeptides poly(ValGlyGlyLeuGly),whose monomelic sequence is a recurring,simple building block of elastin.This polymer adopts a beta-sheet structure as revealed by circular dichroism and Fourier transform infrared spectroscopy.Furthermore,Thioflavin-T and Congo red birefringence assays confirm the presence of amyloid-like structures.To analyze the supramolecular assembly and elastic properties of the fibrils,we employed atomic force microsocopy and spectroscopy,measuring also the elasticity of mature elastin for a comparative analysis.In the case of fibrils we estimated a Young's modulus ranging from 3.5 to 7 MPa,whereas for elastin it is around 1 MPa.The possibility to section individual fibrils with nanometric control by the AFM tip,realizing biomolecular gaps in the 100 nm range,is also demonstrated.These results are expected to open interesting perspectives for the fabrication of protein-inspired nanostructures with specific physical and chemical properties for applications in biotechnology and tissue engineering.
机译:我们报道了淀粉样蛋白原纤维的结构特征,它是由合成的多五肽聚(ValGlyGlyLeuGly)自组装而成,其单体序列是弹性蛋白的重复,简单的结构单元。傅里叶变换红外光谱。此外,硫黄素-T和刚果红双折射测定法证实了淀粉样结构的存在。为了分析原纤维的超分子组装和弹性性质,我们使用原子力显微镜和光谱法,还测量了成熟的弹性弹性蛋白进行比较分析。对于原纤维,我们估计杨氏模量范围为3.5至7 MPa,而弹性蛋白的弹性模量约为1 MPa。可以通过AFM尖端对纳米纤维进行单个切片控制,从而实现生物分子间隙还证明了100 nm范围。这些结果有望为制造打开有趣的前景具有特定物理和化学特性的蛋白质启发的纳米结构,可用于生物技术和组织工程。

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