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Effect of Mid-infrared Free-Electron Laser Irradiation on Refolding of Amyloid-Like Fibrils of Lysozyme into Native Form

机译:中红外自由电子激光辐照对溶菌酶淀粉样原纤维复性为天然形式的影响

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摘要

Aggregation of lysozyme in an acidic solution generates inactive amyloid-like fibrils, with a broad infrared peak appearing at 1,610–1,630 cm−1, characteristic of a β-sheet rich structure. We report here that spontaneous refolding of these fibrils in water could be promoted by mid-infrared free-electron laser (mid-IR FEL) irradiation targeting the amide bands. The Fourier transform infrared spectrum of the fibrils reflected a β-sheet content that was as low as that of the native structure, following FEL irradiation at 1,620 cm−1 (amide I band); both transmission-electron microscopy imaging and Congo Red assay results also demonstrated a reduced fibril structure, and the enzymatic activity of lysozyme fibrils recovered to 70–90 % of the native form. Both irradiations at 1,535 cm−1(amide II band) and 1,240 cm−1 (amide III band) were also more effective for the refolding of the fibrils than mere heating in the absence of FEL. On the contrary, either irradiation at 1,100 or 2,000 cm−1 afforded only about 60 % recovery of lysozyme activity. These results indicate that the specific FEL irradiation tuned to amide bands is efficient in refolding of lysozyme fibrils into native form.
机译:酸性溶液中溶菌酶的聚集会产生无活性的淀粉样蛋白原纤维,在1,610–1,630cm -1 处出现宽红外峰,这是富含β-折叠结构的特征。我们在这里报告说,针对酰胺带的中红外自由电子激光(mid-IR FEL)辐射可以促进水中这些原纤维的自发性重折叠。在1,620 cm -1 (酰胺I谱带)进行FEL辐照后,原纤维的傅立叶变换红外光谱反映的β-折叠含量与天然结构一样低。透射电子显微镜成像和刚果红测定结果均显示原纤维结构减少,溶菌酶原纤维的酶活性恢复至天然形式的70–90%。在1,535cm -1 (酰胺II谱带)和1,240cm -1 (酰胺III谱带)辐照对原纤维的重折叠也比单纯加热更有效。没有FEL。相反,在1,100或2,000 cm -1 照射时,溶菌酶活性只能恢复约60%。这些结果表明,调谐至酰胺带的特定FEL辐照可有效地将溶菌酶原纤维重折叠成天然形式。

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