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FKBP-雷帕霉素-FRB三元复合物的表征

Characterization of the FKBP.rapamycin.FRB ternary complex.

作者信息

Banaszynski Laura A, Liu Corey W, Wandless Thomas J

机构信息

Department of Chemistry, Stanford Magnetic Resonance Laboratory, Stanford University, Stanford, CA 94305, USA.

出版信息

J Am Chem Soc. 2005 Apr 6;127(13):4715-21. doi: 10.1021/ja043277y.

Abstract

Rapamycin is an important immunosuppressant, a possible anticancer therapeutic, and a widely used research tool. Essential to its various functions is its ability to bind simultaneously to two different proteins, FKBP and mTOR. Despite its widespread use, a thorough analysis of the interactions between FKBP, rapamycin, and the rapamycin-binding domain of mTOR, FRB, is lacking. To probe the affinities involved in the formation of the FKBP.rapamycin.FRB complex, we used fluorescence polarization, surface plasmon resonance, and NMR spectroscopy. Analysis of the data shows that rapamycin binds to FRB with moderate affinity (K(d) = 26 +/- 0.8 microM). The FKBP12.rapamycin complex, however, binds to FRB 2000-fold more tightly (K(d) = 12 +/- 0.8 nM) than rapamycin alone. No interaction between FKBP and FRB was detected in the absence of rapamycin. These studies suggest that rapamycin's ability to bind to FRB, and by extension to mTOR, in the absence of FKBP is of little consequence under physiological conditions. Furthermore, protein-protein interactions at the FKBP12-FRB interface play a role in the stability of the ternary complex.

摘要

雷帕霉素是一种重要的免疫抑制剂、一种可能的抗癌治疗药物以及一种广泛使用的研究工具。其各种功能的关键在于它能够同时与两种不同的蛋白质FKBP和mTOR结合。尽管它被广泛使用,但缺乏对FKBP、雷帕霉素以及mTOR的雷帕霉素结合结构域(FRB)之间相互作用的全面分析。为了探究FKBP-雷帕霉素-FRB复合物形成过程中涉及的亲和力,我们使用了荧光偏振、表面等离子体共振和核磁共振光谱技术。数据分析表明,雷帕霉素以中等亲和力(K(d)=26±0.8微摩尔)与FRB结合。然而,FKBP12-雷帕霉素复合物与FRB的结合比单独的雷帕霉素紧密2000倍(K(d)=12±0.8纳摩尔)。在没有雷帕霉素的情况下,未检测到FKBP与FRB之间的相互作用。这些研究表明,在生理条件下,雷帕霉素在没有FKBP时与FRB结合进而与mTOR结合的能力影响不大。此外,FKBP12-FRB界面处的蛋白质-蛋白质相互作用在三元复合物的稳定性中起作用。

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