Vallotton P, Tairi A P, Wohland T, Friedrich-Bénet K, Pick H, Hovius R, Vogel H
Department of Chemistry, Institute of Physical Chemistry, LCPPM, Swiss Federal Institute of Technology, CH-1015 Lausanne, Switzerland.
Biochemistry. 2001 Oct 16;40(41):12237-42. doi: 10.1021/bi0106989.
We have measured fluorescence resonance energy transfer (FRET) between a fluorescent antagonist, bound to the purified detergent-solubilized serotonin type 3 receptor, and a lipophilic acceptor probe partitioned into the micelle surrounding the detergent-solubilized receptor. The experimentally observed FRET efficiency was evaluated on the basis of the characteristic dimensions of the receptor-micelle complex and the average number of acceptor molecules in such micelles. The binding site was determined to be 5.4 +/- 0.9 nm above the center of the detergent micelle. The experiments were performed below the critical micellar concentration of the detergent (C(12)E(9)) used to solubilize the receptor, under which conditions it was demonstrated that the ligand binding activity was fully preserved. This reduces considerably the fluorescence background arising from probes not associated with the receptor, allowing a precise determination of the transfer efficiency.
我们测量了与纯化的去污剂增溶的5-羟色胺3型受体结合的荧光拮抗剂和分配到围绕去污剂增溶受体的胶束中的亲脂性受体探针之间的荧光共振能量转移(FRET)。根据受体 - 胶束复合物的特征尺寸以及此类胶束中受体分子的平均数,对实验观察到的FRET效率进行了评估。确定结合位点位于去污剂胶束中心上方5.4±0.9纳米处。实验在用于增溶受体的去污剂(C(12)E(9))的临界胶束浓度以下进行,在此条件下证明配体结合活性得到了充分保留。这大大降低了未与受体结合的探针产生的荧光背景,从而能够精确测定转移效率。