Gabel Frank, Lensink Marc F, Clantin Bernard, Jacob-Dubuisson Françoise, Villeret Vincent, Ebel Christine
Université Grenoble Alpes, IBS, F-38044 Grenoble, France; CNRS, IBS, F-38044 Grenoble, France; CEA, IBS, F-38044 Grenoble, France; Institut Laue-Langevin, Grenoble, France.
CNRS USR 3078, Institut de Recherche Interdisciplinaire, Campus CNRS de la Haute Borne, Université Lille Nord de France, IFR 147, BP 70478, Villeneuve d'Ascq, France.
Biophys J. 2014 Jul 1;107(1):185-96. doi: 10.1016/j.bpj.2014.05.025.
Probing the solution structure of membrane proteins represents a formidable challenge, particularly when using small-angle scattering. Detergent molecules often present residual scattering contributions even at their match point in small-angle neutron scattering (SANS) measurements. Here, we studied the conformation of FhaC, the outer-membrane, β-barrel transporter of the Bordetella pertussis filamentous hemagglutinin adhesin. SANS measurements were performed on homogeneous solutions of FhaC solubilized in n-octyl-d17-βD-glucoside and on a variant devoid of the α helix H1, which critically obstructs the FhaC pore, in two solvent conditions corresponding to the match points of the protein and the detergent, respectively. Protein-bound detergent amounted to 142 ± 10 mol/mol as determined by analytical ultracentrifugation. By using molecular modeling and starting from three distinct conformations of FhaC and its variant embedded in lipid bilayers, we generated ensembles of protein-detergent arrangement models with 120-160 detergent molecules. The scattered curves were back-calculated for each model and compared with experimental data. Good fits were obtained for relatively compact, connected detergent belts, which occasionally displayed small detergent-free patches on the outer surface of the β barrel. The combination of SANS and modeling clearly enabled us to infer the solution structure of FhaC, with H1 inside the pore as in the crystal structure. We believe that our strategy of combining explicit atomic detergent modeling with SANS measurements has significant potential for structural studies of other detergent-solubilized membrane proteins.
探究膜蛋白的溶液结构是一项极具挑战性的任务,尤其是在使用小角散射技术时。即使在小角中子散射(SANS)测量中处于匹配点,去污剂分子通常仍会产生残余散射贡献。在此,我们研究了百日咳博德特氏菌丝状血凝素黏附素的外膜β桶转运蛋白FhaC的构象。在两种分别对应于蛋白质和去污剂匹配点的溶剂条件下,对溶解在正辛基 - d17 - β - D - 葡萄糖苷中的FhaC均匀溶液以及缺少严重阻碍FhaC孔的α螺旋H1的变体进行了SANS测量。通过分析超速离心测定,与蛋白质结合的去污剂含量为142±10摩尔/摩尔。通过分子建模并从嵌入脂质双层的FhaC及其变体的三种不同构象出发,我们生成了包含120 - 160个去污剂分子的蛋白质 - 去污剂排列模型集合。对每个模型进行反向计算散射曲线,并与实验数据进行比较。对于相对紧凑、相连的去污剂带获得了良好的拟合,这些去污剂带偶尔在β桶外表面显示出小的无去污剂斑块。SANS和建模的结合清楚地使我们能够推断出FhaC的溶液结构,其中H1如在晶体结构中一样位于孔内。我们相信,我们将显式原子去污剂建模与SANS测量相结合的策略在其他去污剂溶解的膜蛋白结构研究中具有巨大潜力。