Møller Jesper Vuust, Olesen Claus, Winther Anne-Marie Lund, Nissen Poul
Centre for Membrane Pumps in Cells and Disease - PUMPKIN, Danish National Research Foundation, Copenhagen, Denmark.
Methods Mol Biol. 2010;654:119-40. doi: 10.1007/978-1-60761-762-4_7.
Improvements in the handling of membrane proteins for crystallization, combined with better synchrotron sources for X-ray diffraction analysis, are leading to clarification of the structural details of an ever increasing number of membrane transporters and receptors. Here we describe how this development has resulted in the elucidation at atomic resolution of a large number of structures of the sarcoplasmic Ca(2+)-ATPase (SERCA1a) present in skeletal muscle. The structures corresponding to the various intermediary states have been obtained after stabilization with structural analogues of ATP and of metal fluorides as mimicks of inorganic phosphate. From these results it is possible, in accordance with previous biochemical and molecular biology data, to give a detailed structural description of both ATP hydrolysis and Ca(2+) transport through the membrane, to serve as the starting point for a fuller understanding of the pump mechanism and, in future studies, on the regulatory role of this ubiquitous intracellular Ca(2+)-ATPase in cellular Ca(2+) metabolism in normal and pathological conditions.
用于结晶的膜蛋白处理方法的改进,以及用于X射线衍射分析的更好的同步辐射源,正使得越来越多的膜转运蛋白和受体的结构细节得以阐明。在此,我们描述了这一进展如何促成了对骨骼肌中存在的肌浆网Ca(2+)-ATP酶(SERCA1a)大量结构的原子分辨率解析。在用ATP的结构类似物以及作为无机磷酸模拟物的金属氟化物进行稳定化处理后,获得了对应于各种中间状态的结构。根据先前的生化和分子生物学数据,从这些结果中可以给出ATP水解以及Ca(2+)通过膜转运的详细结构描述,作为更全面理解泵机制的起点,并在未来的研究中,理解这种普遍存在的细胞内Ca(2+)-ATP酶在正常和病理条件下细胞Ca(2+)代谢中的调节作用。