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1Techniques for detecting protein-protein interactions in living cells:principles, limitations, and recent progress显示文摘Detecting protein-protein interactions(PPIs) provides fundamental information for understanding biochemical processes such as the transduction of signals from one cellular location to another; however, traditional biochemical techniques cannot provide sufficient spatio-temporal information to elucidate these molecular interactions in living cells. Over the past decade, several new techniques have enabled the identification and characterization of PPIs. In this review, we summarize three main techniques for detecting PPIs in vivo, focusing on their basic principles and applications in biological studies. We place a special emphasis on their advantages and limitations, and, in particular, we introduced some uncommon new techniques, such as single-molecule FRET(smFRET), FRET-fluorescence lifetime imaging microscopy(FRET-FLIM), cytoskeleton-based assay for protein-protein interaction(CAPPI) and single-molecule protein proximity index(smPPI), highlighting recent improvements to the established techniques. We hope that this review will provide a valuable reference to enable researchers to select the most appropriate technique for detecting PPIs.Yaning Cui Xi Zhang Meng Yu Yingfang Zhu Jingjing Xing Jinxing Lin 2019Science China(Life Sciences)2019,62,5:9
2蛋白质互作技术研究进展显示文摘蛋白质作为细胞活性及功能的执行者,以复杂有序的动态互作协调着细胞的增殖与分化、衰老与死亡以及环境应答等各种重要生理过程。重点介绍了酵母双杂交系统、双分子荧光互补、噬菌体展示技术、荧光共振能量转移技术、谷胱甘肽巯基转移酶融合蛋白沉降技术、免疫共沉淀技术等蛋白质互作研究技术的原理及在生物学中的应用,以及生物信息学在蛋白质互作研究中的应用,并对目前及未来蛋白质互作技术的发展方向进行了探讨。卢艳艳 王超 侍福梅 2019湖北农业科学2019,58,12:1
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