首页> 外文会议>SPIE Conference on Terahertz Technology and Applications >Terahertz spectroscopic techniques for the study of proteinsin aqueous solutions
【24h】

Terahertz spectroscopic techniques for the study of proteinsin aqueous solutions

机译:Terahertz蛋白质水溶液研究的光谱技术

获取原文

摘要

Liquid water is a very strong absorber in the THz frequency range. We have set-up a unique germanium laser spectrometer consisting of a Ge:Be laser, tunable from 1 to 4 THz, and a sensitive Ge photoconductor detector. The spectrometer uses a measurement scheme alternating sample and reference signal while placed in an environmentally controlled housing for high stability of temperature and humidity. The laser system leads to a very small statistical error in the absolute absorption coefficient (400-500 cm-1) of less than 0.1% corresponding to 0.3 cm~(-1) while systematic errors due to filling of the sample cells become dominant. The high accuracy allows us to systematically investigate the effects of different solvates on water dynamics. Even a single point mutation in a protein can be measured in the THz absorption coefficient in the spectral range from 2 to 3 THz. The system has been recently used to study various solvates in liquid water like sugars and prototype proteins in aqueous buffer solutions in dependence of temperature, pH values, and denaturants. These studies are now augmented by time-resolved measurements using THz time-domain spectroscopy to analyze the kinetics of protein folding. We also discuss other THz sources and detection methods including the investigation of coherent synchrotron radiation at the synchrotron ANKA in Karlsruhe.
机译:液态水是THz频率范围内极强的吸收器。我们已经建立了由GE组成的独特锗激光光谱仪:激光,可调谐1至4 ZHz,以及敏感的GE光电导体检测器。光谱仪使用测量方案交替的样品和参考信号,同时放置在环境控制的壳体中,用于高温和湿度的高稳定性。激光系统在低于0.3cm〜(-1)的绝对吸收系数(400-500cm-1)中导致非常小的统计误差,相当于0.3cm〜(-1),而引起的样品细胞引起的系统误差变得显着。高精度使我们能够系统地研究不同溶剂化物对水动力学的影响。即使在蛋白质中的单点突变也可以在光谱范围为2至3至3Th的Thz吸收系数中测量。最近,该系统用于研究含有糖和含水缓冲溶液中的液体水中的各种溶剂化物,依赖于温度,pH值和变性剂。现在使用THz时域光谱通过时间分辨测量来增强这些研究,以分析蛋白质折叠的动力学。我们还讨论了其他THZ来源和检测方法,包括在卡尔斯鲁赫的同步rotron anka上的相干同步辐射调查。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号