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一种确定生物大分子手性的方法。

A method for establishing the handedness of biological macromolecules.

作者信息

Belnap D M, Olson N H, Baker T S

机构信息

Department of Biological Sciences, Purdue University, West Lafayette, Indiana 47907-1392, USA.

出版信息

J Struct Biol. 1997 Oct;120(1):44-51. doi: 10.1006/jsbi.1997.3896.

Abstract

When biological macromolecules are imaged in the transmission electron microscope (TEM), their inherent handedness is lost because the three-dimensional (3D) structure is projected onto a two-dimensional (2D) plane, and identical 2D projections can be made from either 3D enantiomer. Nevertheless, tilt experiments in the TEM can be used to determine handedness. These experiments have been performed successfully on negatively stained specimens. More recently, the method was applied to unstained, frozen-hydrated specimens imaged by means of cryoelectron microscopy (cryoTEM) methods. Tilt experiments involve recording two micrographs of the same particles at different tilt angles, computing enantiomeric reconstructions from particle images in one micrograph, predicting orientations of corresponding particles in the second micrograph, and comparing model projections with particle images in the second micrograph. In principle, this procedure can be used to determine the handedness of any biological macromolecule imaged by cryoTEM, provided the enantiomeric reconstructions are distinguishable.

摘要

当生物大分子在透射电子显微镜(TEM)中成像时,其固有的手性会丧失,因为三维(3D)结构被投影到二维(2D)平面上,并且相同的2D投影可以从任何一种3D对映体获得。然而,TEM中的倾斜实验可用于确定手性。这些实验已在负染色标本上成功进行。最近,该方法被应用于通过冷冻电子显微镜(cryoTEM)方法成像的未染色、冷冻水合标本。倾斜实验包括在不同倾斜角度记录同一颗粒的两张显微照片,从一张显微照片中的颗粒图像计算对映体重建,预测第二张显微照片中相应颗粒的方向,并将模型投影与第二张显微照片中的颗粒图像进行比较。原则上,只要对映体重建可区分,该程序可用于确定通过cryoTEM成像的任何生物大分子的手性。

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