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Nanostructure Self-Assembly Mechanical Properties and Antioxidant Activity of a Lupin-Derived Peptide Hydrogel

机译:羽扇豆衍生的肽水凝胶的纳米结构自组装机械性能和抗氧化活性

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摘要

Naturally occurring food peptides are frequently used in the life sciences due to their beneficial effects through their impact on specific biochemical pathways. Furthermore, they are often leveraged for applications in areas as diverse as bioengineering, medicine, agriculture, and even fashion. However, progress toward understanding their self-assembling properties as functional materials are often hindered by their long aromatic and charged residue-enriched sequences encrypted in the parent protein sequence. In this study, we elucidate the nanostructure and the hierarchical self-assembly propensity of a lupin-derived peptide which belongs to the α-conglutin (11S globulin, legumin-like protein), with a straightforward N-terminal biotinylated oligoglycine tag-based methodology for controlling the nanostructures, biomechanics, and biological features. Extensive characterization was performed via Circular Dichroism (CD) spectroscopy, Fourier Transform Infrared spectroscopy (FT-IR), rheological measurements, and Atomic Force Microscopy (AFM) analyses. By using the biotin tag, we obtained a thixotropic lupin-derived peptide hydrogel (named BT13) with tunable mechanical properties (from 2 to 11 kPa), without impairing its spontaneous formation of β-sheet secondary structures. Lastly, we demonstrated that this hydrogel has antioxidant activity. Altogether, our findings address multiple challenges associated with the development of naturally occurring food peptide-based hydrogels, offering a new tool to both fine tune the mechanical properties and tailor the antioxidant activities, providing new research directions across food chemistry, biochemistry, and bioengineering.
机译:由于它们对特定生化途径的影响,因此,天然存在的食物肽通常在生命科学中使用。此外,它们通常在不同于生物工程,医学,农业甚至时尚的各种领域中杠杆化。然而,理解其自组装性能作为功能材料的进展通常由它们在母体蛋白质序列中加密的长芳族和带电的残余物序列阻碍。在该研究中,我们阐明纳米结构和羽扇醛衍生肽的分层自组装倾向,该肽属于α-凝集蛋白(11s球蛋白,乳糜蛋白),具有直接的N-末端生物素化的寡糖标签的方法用于控制纳米结构,生物力学和生物学特征。通过圆形二色性(CD)光谱法,傅里叶变换红外光谱(FT-IR),流变测量和原子力显微镜(AFM)分析进行了广泛的表征。通过使用生物素标签,我们获得了具有可调谐机械性能(2至11kPa)的触变性羽扇豆衍生的肽水凝胶(命名为BT13),而不损害其自发形成β-薄片二次结构。最后,我们证明了该水凝胶具有抗氧化活性。总共,我们的研究结果解决了与天然存在的食品肽的水凝胶相关的多种挑战,为微调机械性能和定制抗氧化活动提供了一种新的工具,在食品化学,生物化学和生物工程中提供了新的研究方向。

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