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通过电子顺磁共振光谱研究麦芽糖结合蛋白在其天然态和熔球态下的开放和封闭形式

Open and Closed Form of Maltose Binding Protein in Its Native and Molten Globule State As Studied by Electron Paramagnetic Resonance Spectroscopy.

作者信息

Selmke Benjamin, Borbat Peter P, Nickolaus Chen, Varadarajan Raghavan, Freed Jack H, Trommer Wolfgang E

机构信息

Department of Chemistry , TU Kaiserslautern , Erwin-Schrödinger-Strasse 54 , 67663 Kaiserslautern , Germany.

Department of Chemistry and Chemical Biology, ACERT National Biomedical Center for Advanced ESR Technology , Cornell University , Ithaca , New York 14853-1301 , United States.

出版信息

Biochemistry. 2018 Sep 25;57(38):5507-5512. doi: 10.1021/acs.biochem.8b00322. Epub 2018 Sep 13.

Abstract

An intensively investigated intermediate state of protein folding is the molten globule (MG) state, which contains secondary but hardly any tertiary structure. In previous work, we have determined the distances between interacting spins within maltose binding protein (MBP) in its native state using continuous wave and double electron-electron resonance (DEER) electron paramagnetic resonance (EPR) spectroscopy. Seven double mutants had been employed to investigate the structure within the two domains of MBP. DEER data nicely corroborated the previously available X-ray data. Even in its MG state, MBP is known to still bind its ligand maltose. We therefore hypothesized that there must be a defined structure around the binding pocket of MBP already in the absence of tertiary structure. Here we have investigated the functional and structural difference between native and MG state in the open and closed form with a new set of MBP mutants. In these, the spin-label positions were placed near the active site. Binding of its ligands leads to a conformational change from open to closed state, where the two domains are more closely together. The complete set of MBP mutants was analyzed at pH 3.2 (MG) and pH 7.4 (native state) using double-quantum coherence EPR. The values were compared with theoretical predictions of distances between the labels in biradicals constructed by molecular modeling from the crystal structures of MBP in open and closed form and were found to be in excellent agreement. Measurements show a defined structure around the binding pocket of MBP in MG, which explains maltose binding. A new and important finding is that in both states ligand-free MBP can be found in open and closed form, while ligand-bound MBP appears only in closed form because of maltose binding.

摘要

蛋白质折叠的一种经过深入研究的中间状态是熔融球状体(MG)状态,它含有二级结构,但几乎没有三级结构。在之前的工作中,我们使用连续波和双电子-电子共振(DEER)电子顺磁共振(EPR)光谱法测定了麦芽糖结合蛋白(MBP)天然状态下相互作用自旋之间的距离。我们使用了七个双突变体来研究MBP两个结构域内的结构。DEER数据很好地证实了之前可得的X射线数据。即使处于MG状态,已知MBP仍能结合其配体麦芽糖。因此,我们推测在缺乏三级结构的情况下,MBP结合口袋周围必定存在特定的结构。在这里,我们用一组新的MBP突变体研究了开放形式和封闭形式下天然状态与MG状态之间的功能和结构差异。在这些突变体中,自旋标记位置被放置在活性位点附近。其配体的结合导致从开放状态到封闭状态的构象变化,此时两个结构域靠得更近。使用双量子相干EPR在pH 3.2(MG)和pH 7.4(天然状态)下分析了完整的MBP突变体集。将这些值与通过分子建模从开放和封闭形式的MBP晶体结构构建的双自由基中标记之间距离的理论预测值进行比较,发现两者吻合得非常好。测量结果表明MG状态下MBP结合口袋周围存在特定结构,这解释了麦芽糖结合现象。一个新的重要发现是,在两种状态下,未结合配体的MBP都能以开放和封闭形式存在,而结合配体的MBP由于麦芽糖结合仅以封闭形式出现。

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