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用于高分辨率金属投影的单分子和超分子复合物的制备。

Preparation of single molecules and supramolecular complexes for high-resolution metal shadowing.

作者信息

Fowler W E, Aebi U

出版信息

J Ultrastruct Res. 1983 Jun;83(3):319-34. doi: 10.1016/s0022-5320(83)90139-9.

Abstract

We have compared the appearance and preservation of molecular and supramolecular structures in preparations that were dried in vacuo at room temperature or freeze-dried. Fibrinogen and brain spectrin molecules appear similar in both types of preparation provided that drying at room temperature is performed in the presence of glycerol, which results in an even and reproducible distribution of such molecules (Shotton et al., 1979, J. Mol. Biol. 131, 303-329; Fowler and Erickson, 1979, J. Mol. Biol. 134, 241-249). In the case of crystalline actin sheets, actin filaments, and keratin filaments, freeze-drying preserves structural details that are often completely lost during drying at room temperature, whether or not glycerol is used. On the other hand, keratin filaments prepared by drying in the presence of glycerol display a beaded axial repeat that is probably due to "glycerol decoration." We conclude that although freeze-drying has no clear advantage over glycerol spraying/vacuum-drying in the case of single extended molecules, it may provide insight into the multiple effects of glycerol in specimen preparation. In the case of supramolecular assemblies such as filaments or crystalline sheets, freeze-drying preserves significantly more substructure and surface detail. The loss of such detail during drying at room temperature, probably through collapse phenomena such as distortion and flattening, cannot be prevented by glycerol.

摘要

我们比较了在室温下真空干燥或冷冻干燥的制剂中分子和超分子结构的外观及保存情况。如果在甘油存在的条件下于室温进行干燥,纤维蛋白原和脑血影蛋白分子在这两种类型的制剂中看起来相似,这会导致这些分子分布均匀且可重复(肖顿等人,1979年,《分子生物学杂志》131卷,303 - 329页;福勒和埃里克森,1979年,《分子生物学杂志》134卷,241 - 249页)。对于结晶肌动蛋白片层、肌动蛋白丝和角蛋白丝,冷冻干燥能保留在室温干燥过程中常常完全丧失的结构细节,无论是否使用甘油。另一方面,在甘油存在下干燥制备的角蛋白丝呈现出串珠状的轴向重复,这可能是由于“甘油修饰”。我们得出结论,虽然在单个伸展分子的情况下冷冻干燥相对于甘油喷雾/真空干燥没有明显优势,但它可能有助于深入了解甘油在标本制备中的多种作用。对于诸如细丝或结晶片层等超分子组装体,冷冻干燥能保留更多的亚结构和表面细节。在室温干燥过程中这种细节的丧失,可能是由于诸如变形和扁平化等塌陷现象导致的,甘油无法防止这种情况发生。

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