首页> 外文期刊>Journal of Infrared, Millimeter and Terahertz Waves >Study on Irradiation Effect of Mid-Infrared Free Electron Laser on Hen Egg-White Lysozyme by Using Terahertz-Time Domain Spectroscopy and Synchrotron-Radiation Vacuum-Ultraviolet Circular-Dichroism Spectroscopy
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Study on Irradiation Effect of Mid-Infrared Free Electron Laser on Hen Egg-White Lysozyme by Using Terahertz-Time Domain Spectroscopy and Synchrotron-Radiation Vacuum-Ultraviolet Circular-Dichroism Spectroscopy

机译:使用太赫兹时域光谱和同步辐射真空 - 紫外线 - 二色二倍体光谱研究中红外自由电子激光对母鸡蛋白溶菌酶辐射效应的研究

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摘要

Mid-infrared free-electron laser (MIR-FEL) is potentially applicable for tissue ablation and dissociation of pathological peptide aggregates in medicine. However, it is still poorly understood how the MIR-FEL irradiation influences on functional proteins such as enzymes. In the current study, the effect of MIR-FEL on both aggregate and non-aggregate (= native) states of hen egg-white lysozyme (HEWL) as a representative enzyme has been investigated. Absorption intensity at terahertz region (0.3-1.2 THz, 10-40 cm(-1)) of the aggregate of HEWL was lower than that of the native HEWL, but the former was increased nearly to the same level with the latter after the MIR-FEL irradiation tuned to 6 mu m that corresponds to carbonyl stretching vibrational mode of amide bonds (amide I). This indicates that the aggregate of HEWL was converted to the native state by the irradiation. On the other hand, synchrotron-radiation vacuum-ultraviolet circular-dichroism spectroscopy showed that protein conformation of the native HEWL, which was rich in alpha-helix, was little changed after the MIR-FEL irradiation under the same condition with the case of the aggregate of HEWL. Furthermore, the enzymatic hydrolysis activity of the native HEWL against bacterial glycan was not remarkably decreased by the irradiation. Therefore, it can be estimated that the native structure of HEWL is little damaged although the aggregate state can be easily dissociated by the resonant excitation at amide bonds.
机译:中红外自由电子激光器(MIR-FEL)可能适用于医学中病理肽聚集体的组织消融和解离。然而,它仍然明白MIR-FEL辐射对诸如酶如酶的功能性蛋白质的影响。在目前的研究中,研究了MIR-FEL对母鸡蛋白溶菌酶(HENWL)的骨料和非聚集体(=本地)状态作为代表性酶的影响。太赫兹地区的吸收强度(0.3-1.2 ZHz,10-40cm(-1))的Hewl的聚集体低于原生Hewl,但前者在mir之后与后者几乎增加到与后者相同的水平 - 调谐到6μm的辐照,其对应于酰胺键(酰胺I)的羰基施加振动模式。这表明HEWL的总体被辐照转换为原生状态。另一方面,同步辐射真空 - 紫外线 - 二色性光谱表明,在同一条件下,富含α-螺旋的天然Hewl的蛋白质构象几乎没有变化e总理汇总。此外,通过照射不会显着降低天然Hew1对细菌聚糖的酶水解活性。因此,据估计,由于酰胺键在酰胺键在酰胺键处的共振激发可以容易地解离,因此Hewl的天然结构很少受损。

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