Nishida E, Iida K, Yonezawa N, Koyasu S, Yahara I, Sakai H
Proc Natl Acad Sci U S A. 1987 Aug;84(15):5262-6. doi: 10.1073/pnas.84.15.5262.
Incubation of cultured cells under specific conditions induces a dramatic change in the actin organization: induction of intranuclear and/or cytoplasmic actin rods (actin paracrystal-like intracellular structures). We have found that cofilin, a 21-kDa actin-binding protein, is a component of these rods. Antibodies directed against cofilin labeled intranuclear actin rods induced in cells treated with dimethyl sulfoxide or exposed to heat shock and also labeled cytoplasmic actin rods induced in cells incubated in specific salt buffers. Moreover, we found that these actin rods are not stained with fluorescent phalloidin derivatives at all and appear to be right-handed helices, different from straight bundles of F-actin such as stress fibers. In vitro experiments revealed that cofilin and phalloidin compete with each other for binding to F-actin. Since cofilin and phalloidin have the ability to stoichiometrically bind actin molecule in the filament in vitro, the above results seem to suggest that cofilin directly binds to actin molecule in nearly an equimolar ratio in these rods. We call these rods "actin/cofilin rods."
诱导细胞核内和/或细胞质肌动蛋白棒(肌动蛋白类副晶体状细胞内结构)的形成。我们发现,丝切蛋白(一种21 kDa的肌动蛋白结合蛋白)是这些肌动蛋白棒的组成成分。针对丝切蛋白的抗体标记了在用二甲基亚砜处理的细胞中诱导产生的细胞核内肌动蛋白棒,以及在热休克处理的细胞中诱导产生的细胞核内肌动蛋白棒,还标记了在特定盐缓冲液中培养的细胞中诱导产生的细胞质肌动蛋白棒。此外,我们发现这些肌动蛋白棒根本不会被荧光鬼笔环肽衍生物染色,并且似乎是右手螺旋结构,不同于诸如应力纤维等F-肌动蛋白的直束。体外实验表明,丝切蛋白和鬼笔环肽在与F-肌动蛋白结合方面相互竞争。由于丝切蛋白和鬼笔环肽在体外能够以化学计量比结合肌动蛋白丝中的肌动蛋白分子,上述结果似乎表明,在这些肌动蛋白棒中丝切蛋白以几乎等摩尔的比例直接与肌动蛋白分子结合。我们将这些肌动蛋白棒称为“肌动蛋白/丝切蛋白棒”。