Real-time Monitoring of Ligand-receptor Interactions with Fluorescence Resonance Energy Transfer

被引:5
作者
Dogra, Navneet [1 ]
Reyes, Julia C. [1 ]
Garg, Nishi [1 ]
Kohli, Punit [1 ]
机构
[1] So Illinois Univ, Dept Chem & Biochem, Carbondale, IL 62901 USA
来源
JOVE-JOURNAL OF VISUALIZED EXPERIMENTS | 2012年 / 66期
基金
美国国家科学基金会;
关键词
Biochemistry; Issue; 66; Molecular Biology; Chemistry; Physics; Fluorescence Resonance Energy Transfer (FRET); Polydiacetylene (PDA); Biosensor; Liposome; Sensing;
D O I
10.3791/3805
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
FRET is a process whereby energy is non-radiatively transferred from an excited donor molecule to a ground-state acceptor molecule through long-range dipole-dipole interactions(1). In the present sensing assay, we utilize an interesting property of PDA: blue-shift in the UV-Vis electronic absorption spectrum of PDA (Figure 1) after an analyte interacts with receptors attached to PDA(2,3,4,7). This shift in the PDA absorption spectrum provides changes in the spectral overlap (J) between PDA (acceptor) and rhodamine (donor) that leads to changes in the FRET efficiency. Thus, the interactions between analyte (ligand) and receptors are detected through FRET between donor fluorophores and PDA. In particular, we show the sensing of a model protein molecule streptavidin. We also demonstrate the covalent-binding of bovine serum albumin (BSA) to the liposome surface with FRET mechanism. These interactions between the bilayer liposomes and protein molecules can be sensed in real-time. The proposed method is a general method for sensing small chemical and large biochemical molecules. Since fluorescence is intrinsically more sensitive than colorimetry, the detection limit of the assay can be in sub-nanomolar range or lower(8). Further, PDA can act as a universal acceptor in FRET, which means that multiple sensors can be developed with PDA (acceptor) functionalized with donors and different receptors attached on the surface of PDA liposomes.
引用
收藏
页数:8
相关论文
共 9 条
[1]  
[Anonymous], 1990, Liposomes: A Practical Approach, P33
[2]   DIRECT COLORIMETRIC DETECTION OF A RECEPTOR-LIGAND INTERACTION BY A POLYMERIZED BILAYER ASSEMBLY [J].
CHARYCH, DH ;
NAGY, JO ;
SPEVAK, W ;
BEDNARSKI, MD .
SCIENCE, 1993, 261 (5121) :585-588
[3]   Colorimetric and fluorometric detection of cationic surfactants based on conjugated polydiacetylene supramolecules [J].
Chen, Xiaoqiang ;
Lee, Jung ;
Jou, Min Jung ;
Kim, Jong-Man ;
Yoon, Juyoung .
CHEMICAL COMMUNICATIONS, 2009, (23) :3434-3436
[4]  
Lakowicz J.R., 2004, PRINCIPLES FLUORESCE, V2nd
[5]   Fluorescence Resonance Energy Transfer in Polydiacetylene Liposomes [J].
Li, Xuelian ;
Matthews, Shelton ;
Kohli, Punit .
JOURNAL OF PHYSICAL CHEMISTRY B, 2008, 112 (42) :13263-13272
[6]   Modulating fluorescence resonance energy transfer in conjugated liposomes [J].
Li, Xuelian ;
McCarroll, Matthew ;
Kohli, Punit .
LANGMUIR, 2006, 22 (21) :8615-8617
[7]   Investigating Molecular Interactions in Biosensors Based on Fluorescence Resonance Energy Transfer [J].
Li, Xuelian ;
Kohli, Punit .
JOURNAL OF PHYSICAL CHEMISTRY C, 2010, 114 (14) :6255-6264
[8]   A Color Display System Based on Thermochromic Conjugated Polydiacetylene Supramolecules [J].
Yarimaga, Oktay ;
Im, Maesoon ;
Choi, Yang-Kyu ;
Kim, Tae Won ;
Jung, Yun Kyung ;
Park, Hyun Gyu ;
Lee, Sumi ;
Kim, Jong-Man .
MACROMOLECULAR RESEARCH, 2010, 18 (04) :404-407
[9]   Recent conceptual and technological advances in polydiacetylene-based supramolecular chemosensors [J].
Yoon, Bora ;
Lee, Sumi ;
Kim, Jong-Man .
CHEMICAL SOCIETY REVIEWS, 2009, 38 (07) :1958-1968