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The ultrastructural organization of actin and myosin II filaments in the contractile ring: new support for an old model of cytokinesis

机译:肌动蛋白和肌球蛋白II细丝在收缩环中的超微结构:为旧的胞质分裂模型提供新的支持

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Despite recent advances in our understanding of the components and spatial regulation of the contractile ring (CR), the precise ultrastructure of actin and myosin II within the animal cell CR remains an unanswered question. We used superresolution light microscopy and platinum replica transmission electron microscopy (TEM) to determine the structural organization of actin and myosin II in isolated cortical cytoskeletons prepared from dividing sea urchin embryos. Three-dimensional structured illumination microscopy indicated that within the CR, actin and myosin II filaments were organized into tightly packed linear arrays oriented along the axis of constriction and restricted to a narrow zone within the furrow. In contrast, myosin II filaments in earlier stages of cytokinesis were organized into small, discrete, and regularly spaced clusters. TEM showed that actin within the CR formed a dense and anisotropic array of elongate, antiparallel filaments, whereas myosin II was organized into laterally associated, head-to-head filament chains highly reminiscent of mammalian cell stress fibers. Together these results not only support the canonical “purse-string” model for contractile ring constriction, but also suggest that the CR may be derived from foci of myosin II filaments in a manner similar to what has been demonstrated in fission yeast.
机译:尽管最近我们对收缩环(CR)的成分和空间调节的理解有了新进展,但动物细胞CR中肌动蛋白和肌球蛋白II的精确超微结构仍未得到解答。我们使用超分辨光学显微镜和铂复制品透射电子显微镜(TEM)来确定由分开的海胆胚胎制备的孤立皮质细胞骨架中肌动蛋白和肌球蛋白II的结构组织。三维结构化照明显微术表明,在CR中,肌动蛋白和肌球蛋白II细丝组织成紧密堆积的线性阵列,沿着收缩轴定向并限制在犁沟内的狭窄区域。相比之下,胞质分裂早期的肌球蛋白II细丝组织成小的,离散且规则间隔的簇。 TEM显示,CR中的肌动蛋白形成了密集且各向异性的细长,反平行的细丝阵列,而肌球蛋白II被组织成侧向相关的头对头细丝链,高度类似于哺乳动物细胞应激纤维。这些结果加在一起,不仅支持收缩环收缩的典型“字符串”模型,而且表明CR可能以与裂变酵母中类似的方式衍生自肌球蛋白II细丝的病灶。

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