Egelman E H, Francis N, DeRosier D J
J Mol Biol. 1983 Jun 5;166(4):605-29. doi: 10.1016/s0022-2836(83)80286-1.
Angle-layered aggregates of F-actin are net-like structures induced by Mg2+ concentrations below that used to form paracrystals. These aggregates incorporate the angular disorder of subunits, which has been described elsewhere for isolated actin filaments. Because this disorder is incorporated into the aggregates in solution at the time they are formed, the possibility of negative stain preparation being responsible for the disorder is excluded. The simple two-layered geometry of the angle-layered aggregate provides information about the shape of the component actin filaments free from the superposition of large numbers of layers. A model for the filament shape, derived from single filaments and confirmed by the angle-layered aggregate, is different from those that have previously emerged from paracrystal studies. An understanding of the interfilament bond in both the angle-layered aggregate and the paracrystal allows one to reconcile these different models. We have found a bipolar bonding rule, with staggered crossover points in the angle-layered aggregate, which we suggest is also responsible for Mg2+ paracrystals. This bonding rule can explain the apparent alignment of crossover points in adjacent filaments in paracrystals as a consequence of the superposition of staggered filaments.
F-肌动蛋白的角层状聚集体是由低于用于形成副晶体的镁离子浓度诱导形成的网状结构。这些聚集体包含亚基的角向无序,这种无序在其他地方已针对分离的肌动蛋白丝进行过描述。由于这种无序在聚集体形成时就已融入溶液中的聚集体中,因此排除了负染制备导致这种无序的可能性。角层状聚集体简单的两层几何结构提供了有关组成肌动蛋白丝形状的信息,而不受大量层叠加的影响。从单丝推导并由角层状聚集体证实的丝状体形状模型与先前从副晶体研究中得出的模型不同。了解角层状聚集体和副晶体中的丝间键合可以使人们协调这些不同的模型。我们发现了一个双极键合规则,在角层状聚集体中有交错的交叉点,我们认为这也适用于镁离子副晶体。这个键合规则可以解释副晶体中相邻丝中交叉点的明显排列,这是交错丝叠加的结果。