Department of the Biology, University of Puerto Rico, Río Piedras Campus, San Juan, Puerto Rico; Molecular Sciences Research Center, University of Puerto Rico, San Juan, Puerto Rico.
Department of Physical Sciences, University of Puerto Rico, Río Piedras Campus, San Juan, Puerto Rico; Molecular Sciences Research Center, University of Puerto Rico, San Juan, Puerto Rico.
Anal Biochem. 2020 Dec 1;610:113887. doi: 10.1016/j.ab.2020.113887. Epub 2020 Aug 4.
Over the past 10 years we have been developing a multi-attribute analytical platform that allows for the preparation of milligram amounts of functional, high-pure, and stable Torpedo (muscle-type) nAChR detergent complexes for crystallization purpose. In the present work, we have been able to significantly improve and optimize the purity and yield of nicotinic acetylcholine receptors in detergent complexes (nAChR-DC) without compromising stability and functionality. We implemented new methods in the process, such as analysis and rapid production of samples for future crystallization preparations. Native nAChR was extracted from the electric organ of Torpedo californica using the lipid-like detergent LysoFos Choline 16 (LFC-16), followed by three consecutive steps of chromatography purification. We evaluated the effect of cholesteryl hemisuccinate (CHS) supplementation during the affinity purification steps of nAChR-LFC-16 in terms of receptor secondary structure, stability and functionality. CHS produced significant changes in the degree of β-secondary structure, these changes compromise the diffusion of the nAChR-LFC-16 in lipid cubic phase. The behavior was reversed by Methyl-β-Cyclodextrin treatment. Also, CHS decreased acetylcholine evoked currents of Xenopus leavis oocyte injected with nAChR-LFC-16 in a concentration-dependent manner. Methyl-β-Cyclodextrin treatment do not reverse functionality, however column delipidation produced a functional protein similar to nAChR-LFC-16 without CHS treatment.
在过去的 10 年中,我们一直在开发一种多属性分析平台,该平台允许制备用于结晶目的的毫克量功能性、高纯度和稳定的 Torpedo(肌肉型)nAChR 去污剂复合物。在本工作中,我们已经能够显著提高和优化去污剂复合物(nAChR-DC)中烟碱型乙酰胆碱受体的纯度和产率,而不影响稳定性和功能性。我们在该过程中实施了新的方法,例如用于未来结晶准备的分析和快速生产样品。使用类脂去污剂 LysoFos Choline 16(LFC-16)从加利福尼亚电鳐的电器官中提取天然 nAChR,然后进行连续三步的色谱纯化。我们评估了在 nAChR-LFC-16 的亲和纯化步骤中添加胆固醇琥珀酸半酯(CHS)对受体二级结构、稳定性和功能的影响。CHS 导致β-二级结构的程度发生显著变化,这些变化会影响 nAChR-LFC-16 在脂质立方相中的扩散。Methyl-β-Cyclodextrin 处理可逆转这种行为。此外,CHS 以浓度依赖性方式降低了用 nAChR-LFC-16 注射的非洲爪蟾卵母细胞中乙酰胆碱诱发电流。Methyl-β-Cyclodextrin 处理不能逆转功能,但是柱脱脂产生了一种与未用 CHS 处理的 nAChR-LFC-16 相似的功能性蛋白。