Sørensen Thomas Lykke-Møller, Olesen Claus, Jensen Anne-Marie Lund, Møller Jesper Vuust, Nissen Poul
Department of Molecular Biology, Aarhus University, Denmark.
J Biotechnol. 2006 Aug 5;124(4):704-16. doi: 10.1016/j.jbiotec.2006.02.004. Epub 2006 Mar 6.
High-resolution structures of the Ca(2+)-ATPase have over the last 5 years added a structural dimension to our understanding of the function of this integral membrane protein. The Ca(2+)-ATPase is now by far the membrane protein where the most functionally different conformations have been described in precise structural detail. Here, we review our experience from solving Ca(2+)-ATPase structures: a purification scheme involving minimum handling of the protein to preserve natural and essential lipids, a rational approach to screening for crystals based on a limited number of polyethyleneglycols and many different salts, improving crystal quality using additives, collecting the data and finally solving the structures. We argue that certain of the lessons learned in the present study are very likely to be useful for crystallisation of eukaryotic membrane proteins in general.
在过去5年里,钙ATP酶的高分辨率结构为我们理解这种整合膜蛋白的功能增添了结构维度。目前,钙ATP酶是迄今为止在精确结构细节上描述了功能差异最大构象的膜蛋白。在此,我们回顾我们解析钙ATP酶结构的经验:一种尽量减少对蛋白质处理以保留天然和必需脂质的纯化方案,一种基于有限数量的聚乙二醇和多种不同盐类进行晶体筛选的合理方法,使用添加剂提高晶体质量,收集数据并最终解析结构。我们认为,本研究中吸取的某些经验教训很可能对一般真核膜蛋白的结晶有用。