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Real-Time Observation of Protein Transport across Membranes by Femtosecond Sum Frequency Generation Vibrational Spectroscopy
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作者 Junjun Tan Chuanzhao Li +1 位作者 Jiahui Zhang Shuji Yea 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2018年第4期523-528,615,共7页
Characterization of conformation kinetics of proteins at the interfaces is crucial for understanding the biornolecular functions and the mechanisms of interfacial biological action. But it requires to capture the dyna... Characterization of conformation kinetics of proteins at the interfaces is crucial for understanding the biornolecular functions and the mechanisms of interfacial biological action. But it requires to capture the dynamic structures of proteins at the interfaces with suffi- cient structural and temporal resolutions. Here, we demonstrate that a ferntosecond sum frequency generation vibrational spectroscopy (SFG-VS) system developed by our group provides a powerful tool for monitoring the real-tirne peptide transport across the membranes with time resolution of less than one second. By probing the real-time SFG signals in the arnide I and arnide A bands as WALP23 interacts with DMPG lipid bilayer, it is found that WALP23 is initially absorbed at the gel-phase DMPG bilayer with a random coil structure. The absorption of WALP23 on the surface leads to the surface charge reversal and thus changes the orientation of rnembrane-bound water. As the DMPG bilayer changes from gel phase into fluid phase, WALP23 inserts into the fluid-phase bilayer with its N-terminal end moving across the membrane, which causes the membrane dehydration and the transition of WALP23 conformation from random coil to mixed helix/loop structure and then to pure α-helical structure. The established system is ready to be employed in characterizing other interracial fast processes, which will be certainly helpful for providing a clear physical picture of the interracial phenomena. 展开更多
关键词 Ferntosecond sum frequency generation Peptide transport across membrane Real time Kinetic conformation
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飞秒和频光谱系统的研制 被引量:6
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作者 刘要强 陈桂琴 王朝晖 《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 2013年第2期149-153,共5页
和频光谱是一种具有表面选择性的高灵敏表面光谱检测手段.研制的飞秒和频光谱系统由一个飞秒(10-15 s)脉宽的红外光和一个皮秒(10-12 s)脉宽的可见光共同作用于样品,在这两个入射场频率之和处产生和频信号.该系统既可以获取表面和界面... 和频光谱是一种具有表面选择性的高灵敏表面光谱检测手段.研制的飞秒和频光谱系统由一个飞秒(10-15 s)脉宽的红外光和一个皮秒(10-12 s)脉宽的可见光共同作用于样品,在这两个入射场频率之和处产生和频信号.该系统既可以获取表面和界面上分子的振动光谱、分子取向等重要信息,做到亚单分子层检测,同时还具有很好的时间分辨能力,可以用来研究表面分子的超快过程. 展开更多
关键词 飞秒光谱 表面/界面 振动光谱 超快过程
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