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Deep-UV Raman spectrometer tunable between 193 and 205 nm for structural characterization of proteins

机译:深紫外拉曼光谱仪可在193和205 nm之间调节,用于蛋白质的结构表征

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摘要

A new deep-UV Raman spectrometer utilizing a laser source tunable between 193 and 205 nm has been designed, built, and characterized. Only selected wavelengths from this range have previously been accessible, by Raman shifting of the second, third, and fourth harmonics of the Nd:YAG fundamental in hydrogen. The apparatus was demonstrated to be a useful tool for characterizing hen egg white lysozyme structural rearrangements at various stages of fibril formation. High-quality deep-UV resonance Raman spectra were obtained for both a protein solution and a highly-scattering gelatinous phase formed by fibrillogenic species. In addition to amide bands, strong contribution of ν 12 and ring-C phenylalanine vibrational modes was observed at excitation wavelengths below 200 nm. Remarkably, the Raman cross-section of these modes revealed dramatic change of lysozyme in response to heat denaturation and fibril formation. These results indicate that phenylalanine could serve as a new deep-UV Raman probe of protein structure.
机译:设计,制造和表征了一种新型的深紫外拉曼光谱仪,它利用可在193至205 nm之间可调的激光源。通过氢中Nd:YAG基波的二次,三次和四次谐波的拉曼位移,以前只能访问此范围内的选定波长。该设备被证明是用于表征在原纤维形成的各个阶段的蛋清溶菌酶结构重排的有用工具。对于蛋白质溶液和由原纤维形成的物种形成的高散射凝胶相,均获得了高质量的深紫外共振拉曼光谱。除酰胺带外,在低于200 nm的激发波长处观察到ν12 和环C苯丙氨酸振动模式的强大贡献。显着地,这些模式的拉曼横截面显示出响应于热变性和原纤维形成的溶菌酶的急剧变化。这些结果表明苯丙氨酸可以作为蛋白质结构的新型深紫外拉曼探针。

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