Shao Z, Shi D, Somlyo A V
Department of Molecular Physiology and Biological Physics, Health Sciences Center, University of Virginia, Charlottesville, Virginia 22908-0011 USA.
Biophys J. 2000 Feb;78(2):950-8. doi: 10.1016/S0006-3495(00)76652-5.
Cryoatomic force microscopy (cryo-AFM) was used to image phalloidin-stabilized actin filaments adsorbed to mica. The single filaments are clearly shown to be right-handed helical structures with a periodicity of approximately 38 nm. Even at a moderate concentration ( approximately 10 microg/ml), narrow, branched rafts of actin filaments and larger aggregates have been observed. The resolution achieved is sufficient to resolve actin monomers within the filaments. A closer examination of the images shows that the branched rafts are composed of up to three individual filaments with a highly regular lateral registration with a fixed axial shift of approximately 13 nm. The implications of these higher-order structures are discussed in terms of x-ray fiber diffraction and rheology of actin gels. The cryo-AFM images also indicate that the recently proposed model of left-handed F-actin is likely to be an artifact of preparation and/or low-resolution AFM imaging.
低温原子力显微镜(cryo-AFM)用于对吸附在云母上的鬼笔环肽稳定的肌动蛋白丝进行成像。单根肌动蛋白丝清晰显示为右手螺旋结构,周期约为38纳米。即使在中等浓度(约10微克/毫升)下,也观察到了狭窄的、分支状的肌动蛋白丝筏和更大的聚集体。所达到的分辨率足以分辨丝内的肌动蛋白单体。对图像的仔细检查表明,分支状丝筏由多达三根单独的丝组成,具有高度规则的横向对齐,轴向固定位移约为13纳米。根据X射线纤维衍射和肌动蛋白凝胶的流变学讨论了这些高阶结构的意义。低温原子力显微镜图像还表明,最近提出的左手F-肌动蛋白模型可能是制备过程和/或低分辨率原子力显微镜成像的假象。