The electron microscopy of the nicotinic acetylcholine receptor

Wolfgang Kunath , Michael Giersig , Ferdinand Hucho ∗
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引用次数: 4

Abstract

The nicotinic acetylcholine receptor is a glycoprotein occurring in the electric tissue of the electric ray Torpedo sp. and the electric eel Electrophorus electricus in postsynaptic membranes in high densities. Since these membranes can be easily prepared they have been, since their discovery, a favourable object for electron microscopists. The receptor protein appears in negatively stained membranes as a ring with a diameter of about 75 Å. With improved techniques of preparing membranes which contain the receptor molecules in two-dimensional crystalline arrays and especially with computer-aided image processing, the ring appeared as an arrangement of five maxima (representing probably the five receptor subunits) with a five-fold axis of pseudosymmetry perpendicular to the membrane plane. At present the resolution obtained is better than 20 Å, enough to depict the receptor's overall shape and dimensions but not enough to resolve functional moieties, as for example the selectivity filter and the gating device of the ion channel, which is an integral part of the receptor complex.

The receptor-rich membranes turned out to be models for developing and comparing image processing methods. In this article some of these methods, especially the Circular Harmonic Averaging method, are critically reviewed.

烟碱乙酰胆碱受体的电子显微镜
烟碱乙酰胆碱受体是一种糖蛋白,高密度存在于电鳐鳐和电鳗的突触后膜的电组织中。由于这些膜很容易制备,自发现以来,它们一直是电子显微镜研究的理想对象。受体蛋白在负染色膜中呈直径约75 Å的环状。随着二维晶体阵列中包含受体分子的膜的制备技术的改进,特别是计算机辅助图像处理,环以垂直于膜平面的五重假对称轴的五个最大值(可能代表五个受体亚基)的排列出现。目前获得的分辨率优于20 Å,足以描绘受体的整体形状和尺寸,但不足以解析功能部分,例如选择性滤波器和离子通道的门控装置,这是受体复合物的组成部分。富含受体的膜被证明是开发和比较图像处理方法的模型。本文对其中的一些方法,特别是循环谐波平均法进行了评述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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