首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >The three-dimensional structure of halorhodopsin to 5 A by electron crystallography: A new unbending procedure for two-dimensional crystals by using a global reference structure
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The three-dimensional structure of halorhodopsin to 5 A by electron crystallography: A new unbending procedure for two-dimensional crystals by using a global reference structure

机译:电子晶体法测定卤代视紫红质至5 A的三维结构:使用整体参考结构对二维晶体进行弯曲的新方法

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摘要

Electron microscopy does not, in principle, require highly ordered crystals to determine a high-resolution structure. Nevertheless. crystals of any type help to constrain the molecules into a more limited range of orientations and positions, from which it is easier to carry out structure determination. We describe an improved procedure for determination of crystalline disorder. which we have applied to poorly ordered two-dimensional crystals of the chloride pump halorhodopsin from Halobacterium salinarum. The new image analysis procedure involves the use of a reference projection calculated from a global three-dimensional map to carry out the initial cross-correlation analysis. Coupled with a greater number of images taken with field emission gun microscopes, this has al- lowed us to calculate a three-dimensional structure for halorho- dopsin, in which the seven transmembrane helices and certain molecular features, such as the β-ionone ring of retinal, are now resolved.
机译:电子显微镜原则上不需要高阶晶体来确定高分辨率结构。尽管如此。任何类型的晶体都有助于将分子限制在更有限的方向和位置范围内,从中可以更轻松地进行结构确定。我们描述了一种确定晶体异常的改进程序。我们已将其应用于盐藻嗜盐杆菌中氯泵卤视紫红质的有序二维晶体。新的图像分析程序涉及使用从全局三维图计算出的参考投影来执行初始互相关分析。再加上用场发射枪显微镜拍摄的大量图像,这使我们能够计算出卤代鱼蛋白酶的三维结构,其中七个跨膜螺旋和某些分子特征,例如β-紫罗兰酮环的视网膜,现在已解决。

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