首页> 外文期刊>Vibrational Spectroscopy: An International Journal devoted to Applications of Infrared and Raman Spectroscopy >Time-resolved temperature-jump infrared spectroscopy of peptides with well-defined secondary structure: A Trpzip β-hairpin
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Time-resolved temperature-jump infrared spectroscopy of peptides with well-defined secondary structure: A Trpzip β-hairpin

机译:具有明确定义的二级结构的肽的时间分辨温度跳跃红外光谱:TRPZIPβ-发夹

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摘要

Peptide folding dynamics were studied by time-resolved infrared spectroscopy after initiation with a nanosecond laser-excited temperature-jump. Relaxation kinetics are monitored using amide I' absorption changes following rapid heating of the solvent by a Raman shifted Nd: YAG laser pulse. Lead salt laser diodes provide a tuneable IR source in the amide I' region between 1600 cm~(-1) and 1700 cm~(-1) for probing structural unfolding at single wavelengths. The probe wavelengths are selected by using FTIR measurements that have been performed under thermal equilibrium conditions and indicate the amide I' wavenumbers with the most significant absorption changes. Temperature-dependent spectral changes of water were separated from the spectral variation due to structural changes of the peptide, both in the equilibrium measurements and in the kinetic T-jump data. Polyglutamic acid has been used as a test system to demonstrate the capability of our instrument for acquiring microsecond peptide dynamics. In this work, we studied the relaxation dynamics of a 12-mer tryptophan zipper (Trpzip) peptide, a Trpzip2 variant, that adopts a stable β-hairpin structure in aqueous solution. Rate constants are a few microseconds depending on the sample temperature and are compared with published data indicating characteristics between those of Trpzip 1 and Trpzip2.
机译:用纳秒激光激发温度跳转后,通过时间分辨的红外光谱研究了肽折叠动力学。使用酰胺通过拉曼偏移Nd:YAG激光脉冲快速加热溶剂,通过酰胺I'吸收变化监测弛豫动力学。铅盐激光二极管在1600cm〜(-1)和1700cm〜(-1)之间的酰胺I'区域中提供可调谐的IR源,用于在单波长下探测结构展开。通过使用在热平衡条件下进行的FTIR测量来选择探针波长,并指示酰胺I'VOVENUMBERS具有最显着的吸收变化。由于肽的结构变化,在平衡测量和动力学T跳数据中,温度依赖性水的谱变化与肽的结构变化分离。多谷氨酸已被用作测试系统,以证明我们获取微二肽动态的仪器的能力。在这项工作中,我们研究了12-MEL色氨酸拉链(Trpzip)肽,Trpzip2变体的弛豫动态,其采用水溶液中的稳定β-发夹结构。速率常数是几微秒,具体取决于样本温度,并与表明TRPZIP 1和TRPZIP2之间的特性进行比较。

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