Koeck Philip J B, Purhonen Pasi, Alvang Ronny, Grundberg Björn, Hebert Hans
Royal Institute of Technology, School of Technology and Health, Sweden.
J Struct Biol. 2007 Dec;160(3):344-52. doi: 10.1016/j.jsb.2007.09.001. Epub 2007 Sep 11.
Electron crystallography can be used to determine the structures of membrane proteins at near-atomic resolution in some cases. However, most electron crystallography projects remain at a resolution around 10A. This might be partly due to lack of flatness of many two-dimensional crystals. We have investigated this problem and suggest single particle processing of locally averaged unit cells to improve the quality and possibly the resolution of three-dimensional maps. Applying this method to the secondary transporter melibiose permease we have calculated a three-dimensional map that is clearer and easier to interpret than the map derived using purely electron-crystallographic methods.
在某些情况下,电子晶体学可用于以近原子分辨率确定膜蛋白的结构。然而,大多数电子晶体学项目的分辨率仍停留在约10埃左右。这可能部分是由于许多二维晶体缺乏平整度。我们研究了这个问题,并建议对局部平均晶胞进行单颗粒处理,以提高三维图谱的质量,并有可能提高其分辨率。将此方法应用于次级转运体蜜二糖通透酶,我们计算出了一幅三维图谱,该图谱比使用纯电子晶体学方法得到的图谱更清晰、更易于解读。