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通过2GHz频域荧光测定法对催产素酪氨酸荧光进行皮秒级分辨率测定。

Picosecond resolution of oxytocin tyrosyl fluorescence by 2 GHz frequency-domain fluorometry.

作者信息

Lakowicz J R, Laczko G, Gryczynski I

出版信息

Biophys Chem. 1986 Jul;24(2):97-100. doi: 10.1016/0301-4622(86)80002-3.

Abstract

The technique of frequency-domain fluorometry has been extended to 2000 MHz using the harmonic content of a picosecond laser source and a microchannel plate photomultiplier tube. This new instrument was used to resolve complex subnanosecond intensity and anisotropy decays of the tyrosyl emission of oxytocin. The intensity decay was found to contain at least three exponential components, 80, 359 and 927 ps. The anisotropy analysis revealed a 29 ps torsional motion of the tyrosine residue as well as a 454 ps overall rotational correlation time. The time resolution of this method should permit the comparison of experimental results with theoretical models for motions of proteins.

摘要

频域荧光测定技术已利用皮秒激光源的谐波成分和微通道板光电倍增管扩展至2000兆赫。这台新仪器用于解析催产素酪氨酸发射的复杂亚纳秒强度和各向异性衰减。发现强度衰减至少包含三个指数成分,分别为80皮秒、359皮秒和927皮秒。各向异性分析揭示酪氨酸残基有29皮秒的扭转运动以及454皮秒的整体旋转相关时间。该方法的时间分辨率应能让实验结果与蛋白质运动的理论模型进行比较。

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