首页|利用和频振动光谱探索蛋白质与多肽界面结构的最新研究进展

利用和频振动光谱探索蛋白质与多肽界面结构的最新研究进展

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蛋白质和多肽的界面结构在各种生物过程和技术发展中发挥着重要作用.对这些结构的深入了解对于疾病诊断、药物输送和生物材料的研究至关重要.然而,这些体系的复杂性以及分析方法的局限性限制了其深入研究.尽管X射线晶体学和低温电子显微镜等先进技术在分析蛋白质结构方面做出了重大贡献,但对于实际条件下表面结合蛋白质结构的理解仍然有限,这也为该领域带来了挑战.和频振动光谱技术已经成为分析蛋白质界面分子结构的一种强有力的手段.本文简要介绍和频振动光谱学的基本原理,探讨其在相位测量方面的研究进展,并概述了近三年(2021~2023)的研究成果,展示了和频振动光谱在揭示多肽和蛋白质界面分子结构方面的潜力.本文为进一步利用和频振动光谱探索不同类型的多肽和蛋白质在界面上的结构和功能提供了有利的支持.
Recent Advances in Analyzing Protein and Peptide Structures at Interfaces Using Vibrational Sum-Frequency Generation
The structure of pro-tein and peptide at in-terfaces plays a crucial role in various biologi-cal processes and tech-nological advance-ments.Understanding these structures is criti-cal for diagnosing dis-eases,drug delivery,and developing biomaterials.However,the complexity of these systems and limitations in an-alytical tools have hindered the in-depth exploration.Despite significant efforts in determin-ing protein structures using advanced techniques like X-ray crystallography and cryo-elec-tron microscopy,the understanding of surface-bound protein structures in real conditions re-mains relatively limited,posing a current challenge in this field.Vibrational sum frequency generation(SFG)spectroscopy has been developed as a versatile method for elucidating molecular structures of proteins across interfaces.This review is intended to introduce the ba-sic principle of SFG spectroscopy,discuss its current advancements in phase measurement,and showcase recent examples(2021-2023)illustrating SFG's ability in revealing the molecu-lar structure of peptides and proteins at interfaces.This concise review aims to establish a foundation for future studies and applications exploring different types of peptides and pro-teins at interfaces using SFG.

ProteinPeptideStructureInterfaceSum frequency generation

王百惠、白亦敏、彭佳惠、张苗苗、张伟婷、边红涛、房喻

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陕西师范大学化学化工学院,应用表面与胶体化学教育部重点实验室,西安 710119

蛋白质 多肽 结构 界面 和频振动光谱

国家自然科学基金中央高校基本科研业务费专项Natural Science Fundamental Research Plan of Shaanxi Province111 ProjectProgram for Changjiang ScholarsInnovative Research Team in University

22173054GK2020010092024JC-JCQN-15B14041IRT-14R33

2024

化学物理学报(英文版)
中国物理学会

化学物理学报(英文版)

CSTPCDEI
影响因子:0.162
ISSN:1674-0068
年,卷(期):2024.37(2)
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