Shi D, Somlyo A V, Somlyo A P, Shao Z
Department of Molecular Physiology & Biological Physics, University of Virginia School of Medicine, Box 800736, Charlottesville, VA 22908-0736, U.S.A.
J Microsc. 2001 Mar;201(Pt 3):377-82. doi: 10.1046/j.1365-2818.2001.00844.x.
The surface structure of actin filaments (F-actin) was visualized at high resolution, by atomic force microscopy (AFM) in aqueous solution, in large paracrystals prepared on positively charged lipid monolayers. The increased stability of these closely packed specimens allowed us to show that both the long pitch (38 nm) and the monomer (5.8 nm) can be directly resolved by AFM in the contact mode. The right-handed helical surface, distinguishable in high resolution images, was compared with reconstructed models based on electron microscopy. The height of the rafts, a measure of the actin filament diameter, was 10 +/- 1 nm, whereas the smaller inter-filament distance, 8 +/- 1 nm, was consistent with interdigitation of the filaments. The 10 +/- 1 nm F-actin diameter is in good agreement with the results of fibre X-ray diffraction. As such specimens are relatively easy to prepare without specialized equipment, this method may allow the study of the thin filaments in which F-actin-associated proteins are also present.
通过原子力显微镜(AFM)在水溶液中,在带正电脂质单分子层上制备的大的副晶体中,以高分辨率观察了肌动蛋白丝(F-肌动蛋白)的表面结构。这些紧密堆积标本稳定性的提高使我们能够证明,长间距(38纳米)和单体(5.8纳米)在接触模式下都可以通过AFM直接分辨。在高分辨率图像中可区分的右手螺旋表面,与基于电子显微镜的重建模型进行了比较。筏的高度(肌动蛋白丝直径的一种度量)为10±1纳米,而较小的丝间距离为8±1纳米,这与丝的相互交错一致。10±1纳米的F-肌动蛋白直径与纤维X射线衍射结果高度吻合。由于此类标本相对容易制备且无需专门设备,该方法可能有助于研究其中也存在F-肌动蛋白相关蛋白的细丝。