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Conformational and thermal characterization of a synthetic peptidic fragment inspired from human tropoelastin: Signature of the amyloid fibers

机译:受人类原弹性蛋白启发的合成肽片段的构象和热表征:淀粉样蛋白纤维的签名

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摘要

Objectives : This work deals with the conformational and thermal characterization of a synthetic peptide (S4) released during the proteolysis of human tropoelastin by the matrix metalloproteinase-12 that was shown to form amyloid-like fibres under certain conditions. Materials and methods : S4 peptides were synthesized by solid-phase methodology and aggregated in solution at 80 8C. Fourier transform–infrared spectroscopy (FT–IR) was used to access the secondary structure. Thermal characterization was performed by thermogravimetric analysis (TGA) and differential scanning calorimetry (DSC). Results : The DSC study of the soluble linear peptide S4 in solution in TBS reveals the irreversible aggregation into amyloid fibres. FT–IR, DSC and TGA analyses performed on freeze-dried samples evidence differences between the linear peptide and its associated amyloid-like fibres, both on the conformation and the physical structure. When S4 peptides are aggregated, the prominent conformation scanned by FT–IR is the cross b-structure, corresponding to TGA to an increase of the thermal stability. Moreover, the DSC thermograms of S4 fibres are characteristic of a highly ordered structure, in contrast to the DSC thermograms of S4 linear peptides, characteristic of an amorphous structure. Finally, the DSC analysis of differently hydrated S4 fibres brings to the fore the specific thermal answer of the wet interfaces of the cross b-fibres. Conclusion : FT–IR and thermal techniques are well suited to evidence conformational and structural differences between the soluble peptide and its amyloid form.
机译:目的:这项工作涉及在人类原弹性蛋白被基质金属蛋白酶12蛋白水解过程中释放的合成肽(S4)的构象和热表征,该蛋白在某些条件下可形成淀粉样纤维。材料和方法:S4肽通过固相方法合成并在80 8C的溶液中聚集。傅立叶变换红外光谱(FT-IR)用于访问二级结构。通过热重分析(TGA)和差示扫描量热法(DSC)进行热表征。结果:在TBS中的溶液中的可溶性线性肽S4的DSC研究表明,不可逆的聚集成为淀粉样纤维。对冻干样品进行的FT-IR,DSC和TGA分析表明,线性肽及其相关淀粉样蛋白纤维之间在构象和物理结构上都存在差异。当S4肽聚集时,通过FT-IR扫描的突出构象为交叉b结构,对应于TGA,从而提高了热稳定性。此外,与S4线性肽的DSC温谱图为非晶结构的特征相反,S4纤维的DSC温谱图为高度有序结构的特征。最后,对水合程度不同的S4纤维进行DSC分析,将交叉b纤维的湿界面的特定热响应置于首位。结论:FT-IR和热技术非常适合于证明可溶性肽及其淀粉样蛋白形式之间的构象和结构差异。

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