Université Joseph Fourier, Institut de Biologie Structurale, Grenoble, France.
PLoS One. 2011;6(5):e19677. doi: 10.1371/journal.pone.0019677. Epub 2011 May 13.
Optimized protocols for achieving high-yield expression, purification and reconstitution of membrane proteins are required to study their structure and function. We previously reported high-level expression in Escherichia coli of active BmrC and BmrD proteins from Bacillus subtilis, previously named YheI and YheH. These proteins are half-transporters which belong to the ABC (ATP-Binding Cassette) superfamily and associate in vivo to form a functional transporter able to efflux drugs. In this report, high-yield purification and functional reconstitution were achieved for the heterodimer BmrC/BmrD. In contrast to other detergents more efficient for solubilizing the transporter, dodecyl-ß-D-maltoside (DDM) maintained it in a drug-sensitive and vanadate-sensitive ATPase-competent state after purification by affinity chromatography. High amounts of pure proteins were obtained which were shown either by analytical ultracentrifugation or gel filtration to form a monodisperse heterodimer in solution, which was notably stable for more than one month at 4°C. Functional reconstitution using different lipid compositions induced an 8-fold increase of the ATPase activity (k(cat)∼5 s(-1)). We further validated that the quality of the purified BmrC/BmrD heterodimer is suitable for structural analyses, as its reconstitution at high protein densities led to the formation of 2-D crystals. Electron microscopy of negatively stained crystals allowed the calculation of a projection map at 20 Å resolution revealing that BmrC/BmrD might assemble into oligomers in a lipidic environment.
为了研究膜蛋白的结构和功能,需要优化高产量表达、纯化和重组膜蛋白的方案。我们之前曾报道过枯草芽孢杆菌的 BmrC 和 BmrD 蛋白(以前称为 YheI 和 YheH)在大肠杆菌中的高效表达。这些蛋白是半转运体,属于 ABC(ATP 结合盒)超家族,在体内结合形成能将药物排出的功能转运体。在本报告中,我们实现了 BmrC/BmrD 异二聚体的高产量纯化和功能重建。与其他更有效地溶解转运体的去污剂不同,十二烷基-β-D-麦芽糖苷(DDM)在亲和层析纯化后,仍能使转运体保持在药物敏感和钒酸盐敏感的 ATP 酶活性状态。我们获得了大量的纯蛋白,无论是通过分析超速离心还是凝胶过滤,都表明其在溶液中形成均一的单分散异二聚体,在 4°C 下稳定超过一个月。使用不同的脂质组成进行功能重建,可使 ATP 酶活性增加 8 倍(kcat∼5 s-1)。我们进一步验证了纯化的 BmrC/BmrD 异二聚体的质量适合结构分析,因为其在高蛋白密度下的重建导致了 2-D 晶体的形成。负染色晶体的电子显微镜允许计算出 20 Å 分辨率的投影图,表明 BmrC/BmrD 可能在脂质环境中组装成寡聚物。