Levy Nicolas, Eiler Sylvia, Pradeau-Aubreton Karine, Maillot Benoit, Stricher François, Ruff Marc
IGBMC, UDS, CNRS, INSERM, 1 rue Laurent Fries, 67404 Illkirch, France.
Nat Commun. 2016 Mar 17;7:10932. doi: 10.1038/ncomms10932.
Purification of proteins that participate in large transient complexes is impeded by low amounts, heterogeneity, instability and poor solubility. To circumvent these difficulties we set up a methodology that enables the production of stable complexes for structural and functional studies. This procedure is benchmarked and applied to two challenging protein families: the human steroid nuclear receptors (SNR) and the HIV-1 pre-integration complex. In the context of transcriptional regulation studies, we produce and characterize the ligand-binding domains of the glucocorticoid nuclear receptor and the oestrogen receptor beta in complex with a TIF2 (transcriptional intermediary factor 2) domain containing the three SNR-binding motifs. In the context of retroviral integration, we demonstrate the stabilization of the HIV-1 integrase by formation of complexes with partner proteins and DNA. This procedure provides a powerful research tool for structural and functional studies of proteins participating in non-covalent macromolecular complexes.
参与大型瞬时复合物的蛋白质的纯化受到含量低、异质性、不稳定性和溶解性差的阻碍。为了克服这些困难,我们建立了一种方法,能够生产用于结构和功能研究的稳定复合物。该程序经过了基准测试,并应用于两个具有挑战性的蛋白质家族:人类类固醇核受体(SNR)和HIV-1整合前复合物。在转录调控研究中,我们生产并表征了糖皮质激素核受体和雌激素受体β的配体结合结构域,它们与包含三个SNR结合基序的TIF2(转录中介因子2)结构域形成复合物。在逆转录病毒整合方面,我们证明了通过与伴侣蛋白和DNA形成复合物来稳定HIV-1整合酶。该程序为参与非共价大分子复合物的蛋白质的结构和功能研究提供了强大的研究工具。