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中子自旋回波: 研究蛋白质结构域动力学的利器

Translated title of the contribution: Neutron spin echo spectrometer: advanced in studying protein domain motions
  • 孙喆炘
  • , 崔腾飞
  • , 储祥蔷*
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

With protein being one of the most important components in biological systems, it is essential to know the dynamics of the internal motions of proteins for further understanding of the mechanisms of life. Utilizing the unique properties of thermal neutron scattering with hydrogen isotopes to study the dynamics inside proteins takes full advantage of the low beam energy and high spatiotemporal resolution of neutron spin echo spectroscopy over other experimental methods. This cutting-edge discipline spans nuclear physics and technology, non-equilibrium statistical physics, molecular biology, and proteomics. There are plenty of unknowns and challenges, as well as opportunities to peek at the mysteries of life. In this article, we review the principles of neutron spin echo spectroscopy, the history of its development and its advantages with some examples of experiments that have been performed on protein domain dynamics, then discuss various future applications.
Translated title of the contributionNeutron spin echo spectrometer: advanced in studying protein domain motions
Original languageChinese (Simplified)
Pages (from-to)174-183
Number of pages10
Journal物理
Volume53
Issue number3
DOIs
Publication statusPublished - Mar 2024

Research Keywords

  • neutron scattering
  • neutron spin echo
  • protein domain motion
  • nuclear technology and applications
  • 中子散射
  • 中子自旋回波
  • 蛋白质结构域动力学
  • 核技术及应用

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