Department of Chemistry, Lehigh University, 6 E Packer Ave, Bethlehem, PA, USA.
Department of Chemistry, Lehigh University, 6 E Packer Ave, Bethlehem, PA, USA.
Biophys Chem. 2020 Apr;259:106339. doi: 10.1016/j.bpc.2020.106339. Epub 2020 Feb 26.
A significant hurdle in obtaining biophysical information on membrane proteins is developing a successful strategy for their reconstitution into a suitable membrane mimic. In particular, utilization of the more 'native-like' membrane mimics such as bicelles is generally more challenging than simple micellar solubilization. Caveolin-1, an integral membrane protein involved in membrane curvature, endocytosis, mechano-protection, and signal transduction, has been shown to be particularly recalcitrant to standard reconstitution protocols due to its highly hydrophobic characteristics. Herein we describe a robust method to incorporate recombinantly produced full-length caveolin-1 into bicelles at levels needed for biophysical experimentation. The benchmark of successful reconstitution is the obtainment of protein in a homogeneous state; therefore, we developed a validation procedure to monitor the success of the reconstitution using analytical ultracentrifugation of density-matched bicelles. Our findings indicated that our protocol produces a very homogeneous preparation of caveolin-1 associated with bicelles, and that caveolin-1 is highly α-helical (by circular dichroism spectroscopy). We believe that this methodology will serve as a general strategy to facilitate biophysical studies on membrane proteins.
获得膜蛋白生物物理信息的一个主要障碍是开发一种成功的策略,将其重新构成合适的膜模拟物。特别是,利用更“类似天然”的膜模拟物,如双锥形脂质体,通常比简单的胶束溶解更具挑战性。窖蛋白-1 是一种参与膜曲率、内吞作用、机械保护和信号转导的完整膜蛋白,由于其高度疏水性,已被证明特别难以采用标准的重组方法进行重组。在此,我们描述了一种将重组生产的全长窖蛋白-1掺入双锥形脂质体中的稳健方法,其水平足以进行生物物理实验。成功重组的基准是获得均相状态的蛋白质;因此,我们开发了一种验证程序,使用密度匹配的双锥形脂质体的分析超速离心来监测重组的成功。我们的研究结果表明,我们的方案产生了一种非常均相的窖蛋白-1与双锥形脂质体相关的制剂,并且窖蛋白-1具有高度的α-螺旋性(通过圆二色性光谱)。我们相信,这种方法将成为促进膜蛋白生物物理研究的一般策略。