Pedersen Bjørn P, Morth J Preben, Nissen Poul
Centre for Membrane Pumps in Cells and Disease, Danish National Research Foundation, Aarhus University, Department of Molecular Biology, Gustav Wieds Vej 10C, DK 8000 Aarhus, Denmark.
Acta Crystallogr D Biol Crystallogr. 2010 Mar;66(Pt 3):309-13. doi: 10.1107/S0907444909053244. Epub 2010 Feb 12.
An approach is presented for the structure determination of membrane proteins on the basis of poorly diffracting crystals which exploits molecular replacement for heavy-atom site identification at 6-9 A maximum resolution and improvement of the heavy-atom-derived phases by multi-crystal averaging using quasi-isomorphous data sets. The multi-crystal averaging procedure allows real-space density averaging followed by phase combination between non-isomorphous native data sets to exploit crystal-to-crystal nonisomorphism despite the crystals belonging to the same space group. This approach has been used in the structure determination of H(+)-ATPase and Na(+),K(+)-ATPase using Ca(2+)-ATPase models and its successful application to the Mhp1 symporter using LeuT as a search model is demonstrated.
本文提出了一种基于衍射较差的晶体来确定膜蛋白结构的方法,该方法利用分子置换在最高6-9埃分辨率下识别重原子位点,并通过使用准同晶数据集进行多晶体平均来改善重原子衍生的相位。多晶体平均程序允许进行实空间密度平均,然后在非同晶天然数据集之间进行相位组合,以利用晶体间的非同晶性,尽管这些晶体属于同一空间群。该方法已用于使用Ca(2+)-ATPase模型确定H(+)-ATPase和Na(+),K(+)-ATPase的结构,并证明了其以LeuT作为搜索模型成功应用于Mhp1同向转运体的结构测定。