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Mid-infrared free-electron laser tuned to the amide I band for converting insoluble amyloid-like protein fibrils into the soluble monomeric form

机译:调谐至酰胺I波段的中红外自由电子激光用于将不溶性淀粉样蛋白原纤维转化为可溶单体形式

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摘要

A mid-infrared free-electron laser (FEL) is operated as a pulsed and linearly polarized laser with tunable wavelengths within infrared region. Although the FEL can ablate soft tissues with minimum collateral damage in surgery, the potential of FEL for dissecting protein aggregates is not fully understood. Protein aggregates such as amyloid fibrils are in some cases involved in serious diseases. In our previous study, we showed that amyloid-like lysozyme fibrils could be disaggregated into the native form with FEL irradiation specifically tuned to the amide I band (1,620 cm−1). Here, we show further evidence for the FEL-mediated disaggregation of amyloid-like fibrils using insulin fibrils. Insulin fibrils were prepared in acidic solution and irradiated by the FEL, which was tuned to either 1,620 or 2,000 cm−1 prior to the experiment. The Fourier transform infrared spectroscopy (FT-IR) spectrum after irradiation with the FEL at 1,620 cm−1 indicated that the broad peak (1,630–1,660 cm−1) became almost a single peak (1,652 cm−1), and the β-sheet content was reduced to 25 from 40 % in the fibrils, while that following the irradiation at 2,000 cm−1 remained at 38 %. The Congo Red assay as well as transmission electron microscopy observation confirmed that the number of fibrils was reduced by FEL irradiation at the amide I band. Size-exclusion chromatography analysis indicated that the disaggregated form of fibrils was the monomeric form. These results confirm that FEL irradiation at the amide I band can dissect amyloid-like protein fibrils into the monomeric form in vitro.
机译:中红外自由电子激光器(FEL)用作脉冲和线性偏振激光器,其波长在红外区域内。尽管FEL可以在手术中以最小的附带损害消融软组织,但是FEL解剖蛋白质聚集体的潜力尚未得到充分了解。在某些情况下,蛋白质聚集体(如淀粉样蛋白原纤维)会引起严重的疾病。在我们之前的研究中,我们表明,通过专门针对酰胺I波段(1,620 cm -1 )进行的FEL照射,淀粉样蛋白样的溶菌酶原纤维可以分解为天然形式。在这里,我们显示了使用胰岛素原纤维的FEL介导的淀粉样蛋白原纤维分解的进一步证据。在酸性溶液中制备胰岛素原纤维并用FEL辐照,然后在实验前将其调谐至1,620或2,000 cm -1 。 FEL在1,620cm -1 照射后的傅立叶变换红外光谱(FT-IR)光谱表明宽峰(1,630–1,660cm -1 )几乎变为一个单一峰(1,652 cm -1 ),原纤维中的β-折叠含量从40%降低至25,而在2,000 cm -1 保持在38%。刚果红试验以及透射电子显微镜观察证实,通过酰胺I谱带的FEL辐照减少了原纤维的数量。尺寸排阻色谱分析表明原纤维的分解形式是单体形式。这些结果证实,在酰胺I条带上的FEL辐射可以在体外将淀粉样蛋白原纤维分解为单体形式。

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