大连医科大学 肿瘤干细胞研究院,大连医科大学 肿瘤干细胞研究院,大连医科大学 肿瘤干细胞研究院,University of California,Davis
国家自然科学基金海外及港澳学者合作研究基金资助项目(31328011)
Dalian Medical University,Dalian Medical University,Dalian Medical University,University of California,Davis
This work was supported by a grant from The National Natural Science Foundation of China (31328011)
荧光膜片钳(patch-clamp fluorometry,PCF)是将离子通道蛋白局部的构象变化和门控紧密结合,实时记录同一膜片上离子通道的荧光和电流信号的创新型生物物理学技术,其特点是将经典的膜片钳和现代光学记录结合起来,实时同步完美呈现离子通道执行其功能时的蛋白质构象信息.与研究结构的X射线和冰冻电镜不同,荧光膜片钳提供离子通道处于真实细胞膜生理环境并执行功能的实时动态结构信息.随着新的光学技术、显微成像技术、图像分析技术等的进步,大大地扩展了荧光膜片钳技术的记录范围、分辨精度及敏感度,使研究者以前所未有的时空分辨率来实时观察和记录离子通道蛋白的结构变化.
Patch-clamp fluorometry is a powerful biophysical method that allows the researcher to monitor conformational changes of ion channel in real time, and to correlate dynamic structural information to functional states. As a natural combination of the classic patch-clamping method and state-of-art optical methods, patch-clamp fluorometry is applicable to a wide spectrum of channel studies with unprecedent spatial-temporal resolutions. Unlike other structure-oriented methods such as X-ray crystallography and cryo-EM, patch-clamp fluorometry provides dynamic structural information of channel proteins in intact cell membrane under physiological conditions.
程为,李玫,杜莎,郑劼.荧光膜片钳新技术的应用及进展[J].生物化学与生物物理进展,2016,43(2):187-192
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